Top Banner
129 7. REFERENCES Abdul Munif, Johannes Hallmann, Richard Sikora, 2012. Isolation of root endophytic bacteria from tomato and its bio-control activity against fungal diseases. Vol.6, No. 4. Adams, MJ., 1975. Potato tuber lenticels; Development and structure. Annals of applied biology 79. 265-273. Agarwal, S. and S.T. Shende, 1987. Tetrazolium reducing microorganisms inside the root of Brassica brassica species. Curr. Sci. 56:187-188. Ahmad, F., Ahmad, I., and MS. Khan, 2008. Screening of free-living rhizospheric bacteria for their multiple plant growth- promoting activities. Microbiol. Res.163:173–181. Allen, O.N., 1953. Experiments in soil bacteriology. Burgress Pub. Co. Minneapotes, Minn. PP: 69-70. Anant Bahadur and R.K. Manohar, 2001. Response of okra to biofertilizers. Veg. Sci. 28(2): 197-198. Anburani, A. and Manivannan, K., 2002. Effect of integrated nutrient management on growth in brinjal (Solanum melongena L.) cv. Annamalai. South Indian Horticulture, 50(4-6): 377-386. Andreote, F.D., De Araujo, W. L., De Azevedo, J.L., Van Elsas, J.D., Da Rocha, U.N., and L.S. Van Overbeek, 2009. Endophytic colonization of potato (Solanum tuberosum L.) by a novel competent bacterial endophyte, Pseudomonas putida strain
35

microsoft word - chapter 7xx.pdf

Jan 03, 2017

Download

Documents

dangquynh
Welcome message from author
This document is posted to help you gain knowledge. Please leave a comment to let me know what you think about it! Share it to your friends and learn new things together.
Transcript
Page 1: microsoft word - chapter 7xx.pdf

129

7. REFERENCES

Abdul Munif, Johannes Hallmann, Richard Sikora, 2012. Isolation

of root endophytic bacteria from tomato and its bio-control

activity against fungal diseases. Vol.6, No. 4.

Adams, MJ., 1975. Potato tuber lenticels; Development and

structure. Annals of applied biology 79. 265-273.

Agarwal, S. and S.T. Shende, 1987. Tetrazolium reducing

microorganisms inside the root of Brassica brassica species.

Curr. Sci. 56:187-188.

Ahmad, F., Ahmad, I., and MS. Khan, 2008. Screening of free-living

rhizospheric bacteria for their multiple plant growth-

promoting activities. Microbiol. Res.163:173–181.

Allen, O.N., 1953. Experiments in soil bacteriology. Burgress Pub.

Co. Minneapotes, Minn. PP: 69-70.

Anant Bahadur and R.K. Manohar, 2001. Response of okra to

biofertilizers. Veg. Sci. 28(2): 197-198.

Anburani, A. and Manivannan, K., 2002. Effect of integrated

nutrient management on growth in brinjal (Solanum

melongena L.) cv. Annamalai. South Indian Horticulture,

50(4-6): 377-386.

Andreote, F.D., De Araujo, W. L., De Azevedo, J.L., Van Elsas, J.D.,

Da Rocha, U.N., and L.S. Van Overbeek, 2009. Endophytic

colonization of potato (Solanum tuberosum L.) by a novel

competent bacterial endophyte, Pseudomonas putida strain

Page 2: microsoft word - chapter 7xx.pdf

130

P9, and its effect on associated bacterial communities.

Applied and Environmental Microbiology 75:3396 -3406.

Andrews, J.H., 1992. Biological control in the phyllosphere. Annu.

Rev. Phytopathol. 30. 603- 635.

Andrews, J.H., and R.F. Harris, 2000. The ecology and

biogeography of microorganisms of plant surfaces. Annual

Review of Phytopathology. 38:145-180.

Ann M. Hirsch, 2009. Brief History of the Discovery of Nitrogen-

fixing Organisms. (http://www.mcdb.ucla.edu/research/

hirsch/images b/N2 fixing organism)

Aravind, R., Kumar, A. and S.J. Eapen. Tracking of endophytic

bacteria in different parts of black pepper (Pipper nigrum L.):

root, stem and leaves Indian institute of spices research.

Ardanov Pavlo, Ovcharenko Leonid, ZaetsIryna, Kozyrovska Natalia,

Pirttil Anna Maria, 2011. Endophytic bacteria enhancing

growth and disease resistance of potato (Solanum

tuberosum L.). J. of Biological Control. Volume 56, Issue 1,

Pages 43–49.

Arnon, D.I., 1949. Copper enzymes in isolated chloroplast

Polyphenoloxidase in Beta vulgaris.

Arundhati Pal Aparna Chattopadhyay and A. K. Paul, 2012.

Diversity and Antimicrobial spectrum of endophytic bacteria

isolated from Paederia foetida L. International Journal of

Current Pharmaceutical Research. Vol 4, Issue 3.

Page 3: microsoft word - chapter 7xx.pdf

131

Asha RAJ, K.., and V.L. Geetha kumari, 2001. Effect of organic

manures and Azospirillum inoculation on yield and quality of

Okra (Abelmoschus esculentus) (L.) MOENCH. Veg. Sci. 28(2):

179-181 (2001).

Asha, B.B., S.Chandra Nayaka, A.C. Udayashankar, C.Srinivas and

S.R.Niranjana, 2011. Biologica control of F. oxysporum sp.

f. lycopersici causing wilt of tomato by P. fluorescens. Int.

J.Micr. Res., 3, 79-84.

Bacon, CW., and D.M. Hinton, 2006.S Bacterial endophytes: the

endophytic niche, its occupants, and its utility. In:

Gnanamanickam SS (ed) Plant-associated bacteria. Springer,

The Netherlands, pp 155–194.

Balachandar, D., Sandhiya , G. S., Sugitha, T.C.K. and K. Kumar,

2006. Flavonoids and growth hormones influence endophytic

colonization and in plants nitrogen fixation by a

diazotrophic Serratia sp. in rice. World Journal of Microbiology

& Biotechnology 22: 707 – 712 .

Baldani, J.I. and J.F. Salles, 1998. Indução de resistênciaem

plantas cultivada satravésde bactérias endofíticas

transgênicas. Anais do VI Simpósio de Controle Biológico,

Fiocruz, Rio de Janeiro, Brazil. pp. 267-272.

Baldani, J.I., Caruso, L., Baldani, V.L.D., Goi, S.R. and

J. Dobereiner, 1997. Recent advances in BNF with nonlegume

plants. Soil Biology and Biochemistry 29: 911-922.

Page 4: microsoft word - chapter 7xx.pdf

132

Baldiani, J.I., V.L.D. Baldiani, L. Seldin and J. Dobereiner, 1986.

Characterization of Herbaspirillum seropedica gen. nov. sp.

nov. a root associated nitrogen fixing bacterium. Int. J. Syst.

Bacteriol., 36: 86-93.

Baldiani, V.L.D., and J. Dobereiner, 1980. Host-plant specificity in

the infection of wheat with Azospirillum spp. Soil. Biol. 12:

433-439.

Barbieri P, Zanelli T, Galli E, Zanetti G 1986: Wheat inoculation

with Azospirillum brasilense Sp6 and some mutants altered in

nitrogen fixation and indole-3-acetic acid production. FEMS

Microbiol. Lett 36:87-90.

Barraquio WL, Ladha JK, Watanabe I (1983) Isolation and

identification of nitrogen fixing Pseudomonas associated with

wetland rice. Can J Microbiol 29:867–873.

Barraquio, W.L., Revilla, L. and Ladha, J.K. 1997. Isolation of

endophytic bacteria from wetland rice. Plant Soil, 194: 15–24.

Basetmia, M.A., Shamsuddin, Z.H. and Maziah Mahmood, 2010.

Use of Plant Growth Promoting Bacteria in Banana: A

NewInsight for Sustainable Banana Production. International

journal of agriculture & Biology .ISSN Print: 1560–8530; ISSN

Online: 1814–9596.

Bashan, Y., 1998. Inoculants of plant growth promoting bacteria for

use in agriculture. Biotechnol. Adv. 16:729–770.

Page 5: microsoft word - chapter 7xx.pdf

133

Begg’s, C. J., and E. Welmann, 1985. Analysis of light controlled

Anthocyanin synthesis in Coleoptiles of Zea mays L. The role

of UV, blue red and far red light. Journal of Phytochemistry

and Phytobiology. 41: 481 – 486.

Bell, C.R., Dickie, G.A., Harvey, W.L.G. and J.W.Y.F. Chan, 1995.

Endophytic bacteria in grapevine. Can. J. Microbiol. 41:46-

53.

Benizri, E., A. Courtade, C. Picard and A. Guckert, 1998. Role of

maize root exudates in the production of auxins Pseudomonas

fluorescens M. 3.1. Soil Biol. Biochem., 30: 1481-1484.

Berendsen, R.L., Pieterse, C.M.J. and P.A.H.M. Bakker, 2012. The

rhizosphere microbiome and plant health. Trends in Plant

Science 17: 478 – 486.

Bergersen, F.J., 1980. Measurement of nitrogen fixation by direct

means, In: F.J. Bergersen (ed.), Methods for evaluating

biological nitrogen fixation. John Wiley and Sons. Inc., New

York., pp: 65-110.

Bhakare, G. C., Deokar, C. D., Navale, A. M., Sonawane, R. B.

Comparative performance of Azotobacter biofertilizers on

growth and yield of brinjal. Asian Journal of Horticulture

2009 Vol. 3 No. 2 pp. 377-379.

Bilal R, Malik KA (1987) Isolation and identification of a N2-fixing

zoogloea-forming bacterium from kallar grass histoplane. J

Appl Bacteriol 62: 289–294.

Page 6: microsoft word - chapter 7xx.pdf

134

Bilal R, Rasul G, Qureshi JA, Malik KA (1990b) Characterization of

Azospirillum and related diazotrophs associated with roots of

plants growing in saline soils. World J Microbiol Biotechnol

6:46–52.

Biology of Brinjal. Ministry of Government and Forests and

Department of Biotechnology, Ministry of Science and

Technology, Government of India.

Biology of Okra. Ministry of Government and Forests and

Department of Biotechnology, Ministry of Science and

Technology, Government of India.

Boudjella H, Bouti K, Zitouni A, Mathieu F, Lebrihi A, Sabaou N

(2006). Taxonomy and chemical characterization of

antibiotics of Streptosporangium Sg10 isolated from a

Saharan soil. Microbiol. Res. 161:288-298.

Brandl, M., and R. Amundson, 2008. Leaf age as a risk factor in

contamination of lettuce with Escherichia coli O157:H7 and

Salmonella enterica. Applied and Environmental Microbiology.

74: 2298-2306.

Brown, M.E. 1972. Plant growth substances produced by

microorganisms of soil and rhizosphere. J. Appl. Bacteriol.

35, 443–451.

Burdman, S., Jurkevitch, E., and Y.Okon, 2000. Recent advances

in the use of plant growth promoting rhizobacteria (PGPR) in

Page 7: microsoft word - chapter 7xx.pdf

135

agriculture, in: Microbial Interactions in Agriculture and

Forestry.

Carl Linnaeus, 1753. Species Plantarum.

Cavalcante, V.A. and J. Dobereiner, 1998. A new acid tolerant

nitrogen fixing bacterium associated with sugarcane. Pl. Soil,

108:23-31.

Chanway, C. P. 1995. Endophytes: they’re not just fungi. Can. J.

Microbiol. 74:321–322.

Chanway, C. P., R. Hynes and L. M. Nelson, 1989. Plant growth-

promoting rhizobacteria: effects on growth and nitrogen

fixation of lentil (Lens esculenta Moench) and pea (Pisum

sativum L.). Soil Biology and Biochemistry, 21: 511-517.

Chatto, D., Gandroo, MA., and MY. Zargar, 1997. Effect of

Azospirillum and Azotobacter on growth, yield and quality of

knolkhol (Brassica oleraceae L.var. gongylodes). Veg. Sci. 24:

16-19.

Chaudhari, B.K., and N.J. Vihol, 2011. Efficacy of bio-fertilizers and

fertilizers on growth and yield of brinjal cv. GOB-1. The Asian

Journal of Horticulture., Vol 6; No.1, 41-42.

Chelius, M. K., and E. W. Triplett, 2000. Immunolocalization of

dinitrogenase reductase produced by Klebsiella pneumoniae

in association with Zea mays L. Applied and Environmental

Microbiology, 66(2), 783-787.

Page 8: microsoft word - chapter 7xx.pdf

136

Claudine Franche, Kristina Lindström and Claudine Elmerich,

2009. Plant Soil. 321:35–59.

Compant S, Duffy B, Nowak J, Cl C & Barka EA (2005a) Use of

plant growth-promoting bacteria for biocontrol of plant

diseases: principles, mechanisms of action, and future

prospects. Appl Environ Microbiol 71: 4951–4959.

Compant S, Reiter B, Sessitsch A, Nowak J, Clément C & Barka EA

(2005b) Endophytic colonization of Vitis vinifera L. by a plant

growth-promoting bacterium, Burkholderia sp. strain PSJN.

Appl Environ Microbiol 71: 1685–1693.

Costa JM & Loper JE (1994) Characterization of siderophore

production by the biological-control agent Enterobacter

cloacae. Mol Plant Microbe Interact 7: 440–448.

Costacurta, A., P. Mazzafera and Y.B. Rosato, 1998. Indole-3-acetic

acid biosynthesis by Xanthomonas axonopodis pv. Citri is

increased in the presence of plant leaf extracts. FEMS

Microbiol. Lett., 159: 215-220.

Dcka, JC., Jora, GC. and Shadeque A, 1996. Effect of Azospirillum

on growth and yield of chilli (Capsicum annum L.) Pusa Jwala.

Haryana J. Hort. SCI. 25 (2): 44-46.

Denise K. Zinniel, Pat Lambrecht, N. Beth Harris, Zhengyu Feng,

Daniel Kuczmarski, Phyllis Higley, Carol A. Ishimaru, Alahari

Arunakumari, Raul G. Barletta and Anne K. Vidaver, 2002.

Isolation and Characterization of Endophytic Colonizing

Page 9: microsoft word - chapter 7xx.pdf

137

Bacteria from Agronomic Crops and Prairie Plants. Applied

and Environmental Microbiology, p. 2198–2208 Vol. 68, No.

5.

Dobbelaere S, and Y. Okon, 2007. The plant growth promoting

effect and plant response. In: Elmerich C, Newton WE(eds)

Associative and endophytic nitrogen-fixing bacteria and

cyanobacterial associations. Springer, Dordrecht, PP-145–

170.

Dobbelaere, S., Croonenborghs, A., Thys, A., Ptacek, D.,

Vanderleyden, J., Dutto, P., Labandera-Gonzalez, C.,

Caballero-Mellado, J., Aguirre, J.F., Kapulnik, Y., Brener, S.,

Burdman, S., Kadouri, D., Sarig, S., and Okon, Y., 2001,

Responses of agronomically important crops to inoculation

with Azospirillum, Aust. J. Plant Physiol. 28:871-879.

Dobbelaere, S., Croonenborghs, A., Thys, A., Vande Broek, A. and

J.Vanderleyden, 1999. Phyto stimulatory effect of Azospirillum

brasilense wild type and mutant strains altered in IAA

production on wheat. Plant Soil, 212: 155-164.

Dobbelaere, S., Vanderleyden, J., and Y. Okon, 2003. Plant growth-

promoting effects of diazotrophs in the rhizosphere, Crit. Rev.

Plant Sci. 22:107-149.

Dobereiner, J. (1992b). History and new perspectives of

diazotrophic bacteria in association with nonleguminous

plants. Symbiosis 13:1-13.

Page 10: microsoft word - chapter 7xx.pdf

138

Dobereiner, J. 1992a . Recent changes in concepts of plant-bacteria

interactions: Endophytic N2 fixing bacteria. Ciênciae cultura

44: 310-313.

Dobereiner, J., Baldani, V.D.L., Olivares, F.L. and V.M. Reis, 1994.

Endophytic diazotrophics: The key to graminaceous plants.

In:"Nitrogen Fixation with nonlegumes".

Doebereiner, J., and F.O., Pedrosa, 1987. Nitrogen-Fixing Bacteria

in Nonleguminous Crop Plants. Science Tech., New York.

Eady RR (1992) The dinitrogen-fixing bacteria. In: Balows A, Troper

HG, Dworkin M, Harder W, Schleifer K (eds) The prokaryotes,

vol 1, 2nd edn. Springer, Berlin Heidelberg New York, pp 534–

553.

Elmerich C, Zimmer W, Vieille C (1992) Associative nitrogen fixing

bacteria. In: Stacey G, Burris RH, Evans HJ (eds) Biological

nitrogen fixation. Chapman and Hall Inc, New York, pp 212–

258.

Elvira-Recuenco, M. and JW. Van Vuurde, 2000.Natural incidence

of endophytic bacteria population in pea cultivars under field

conditions. Can. J Microbiol.Nov;46(11):1036-41.

Engelhard, M., Hurek, T., and B. Reinhold-Hurek, 2000.

Preferential occurrence of diazotrophic endophytes, Azoarcus

spp., in wild rice species and land races of Oryza sativa in

comparison with modern races. Environmental Microbiology

2: 131 – 141.

Page 11: microsoft word - chapter 7xx.pdf

139

Faeth, S. H., and W. F.Fagan, 2002. Fungal endophytes: Common

host plant symbionts but uncommon mutualists. Integrative

and Comparative Biology, 42(2), 360-368.

Fernando Dini Andreote, Welington L. de Araujo, Joao L. de

Azevedo, Jan Dirk van Elsas, Ulisses Nunes da Rocha and

Leonard S. van Overbeek, 2009.Endophytic colonization of

potato (Solanum tuberosum L.) by a Novel Competent

Bacterial Endophyte, Pseudomonas putida Strain P9, and Its

effect on Associated Bacterial Communities. Appl. Environ.

Microbiol. 75(11):3396.

FikrettinSahin, Ramazan Çakmakçi and Faik Kantar, 2004.Sugar

beet and barley yields in relation to inoculation with N2-fixing

and phosphate solubilizing bacteria. Plant and Soil 265: 123–

129.

Fisher, P J., Petrini, O., and HM. Lappin Scott.1992. The

distribution of some fungal and bacterial endophytes in maize

(Zea mays L.) New Phytol. 122, 299–305.

Food and Agriculture Organization (FAO). Period of Report: 2005.

Food safety and stndard authority of India, Ministry of health and

family welfare, Govt. of India, New Delhi, 2012. Lab Manual

5: FSSAI, Manual methods of analysis of foods for fruits and

vegetables.

Frommel MI, Nowak J, Lazarovits G (1991) Growth enhancement

and developmental modifications of in vitro grown potato

Page 12: microsoft word - chapter 7xx.pdf

140

(Solanum tu b e r o sum s s p . t u b e r o sum ) a s a f f e c t e d

b y a nonfluorescent Pseudomonas sp. Plant Physiol 96: 928–

936.

Furnkranz, M., Lukesch, B., Muller, H., Huss, H., Grube, M., and

G. Berg. 2012. Microbial diversity inside pumpkins:

microhabitat-specific communities display a high antagonistic

potential against phytopathogens. Microb. Feb: 63(2):418-

428.

Gagne, S., C. Richard, H. Rousseau, and H. Antoun. 1987. Xylem-

residing bacteria in alfalfa roots. Can. J. Microbiol. 33: 996-

1000.

Garbeva, P., Overbeek, L. S., Vuurde, J. W. L., and J. D. Elsas,

2001. Analysis of endophytic bacterial communities of potato

by plating and denaturing gradient electrophoresis (DGGE) of

16SrDNA based PCR fragments. Microbial Ecology 41: 369 –

383.

Gholami, S., Shahsavani, and S. Nezarat, 2009.The Effect of Plant

Growth Promoting Rhizobacteria (PGPR) on Germination,

Seedling Growth and Yield of Maize. International Journal of

Biological and Life Sciences 5:1.

Gorden, S.A., and L.A, Paleg, 1957. Quantitative measurement of

IAA. Plant Physiol. 10: 347-348.

Guo J., Tang S., Ju X., Ding Y., Liao S. and N. Song, 2011. Effects

of inoculation of a plant growth promoting rhizobacterium

Page 13: microsoft word - chapter 7xx.pdf

141

Burkholderia sp. D54 on plant growth and metal uptake by a

hyperaccumulator Sedum alfredii Hance grown on multiple

metal contaminated soil. World Journal of Microbiology and

Biotechnology. 27:2835–2844.

Hallmann J, Quadt-Hallmann A, Mahaffee WF & Kloepper JW

(1997) Bacterial endophytes in agricultural crops. Can J

Microbiol 43: 895–914.

Hallmann, J., A. Quadt-Hallmann, W. F. Mahaffee, and J. W.

Kloepper. 1997 a. Bacterial endophytes in agricultural crops.

Can. J. Microbiol. 43:895-914.

Halverson, L. J. and J. Handelsman,1991. Enhancement Halverson

of soybean nodulation by Bacillus cereus UW85 in the field

and in a growth chamber. Appl.Environ. Microbiol. 57:2767-

2770.

Hernandez Perez, P., and L. J. Dutoit. 2006. Seed borne

Cladosporium variabile and Stemphylium botryosum in

spinach. Plant Disease. 90:137-145.

Hornschuh, M., Grotha, R., and U. Kutschera, 2002. Epiphytic

bacteria associated with the bryophyte Funaria hygrometrica:

Effects of methylobacterium strains - protonema

development. Plant Biology, 4(6), 682-687.

Hudson, A. O., Ahmad, N. H.,Van Buren, R., and M. A. Savka,

2010. Sugarcane and Grapevine Endophytic Bacteria:

Isolation, Detection of Quorum Sensing Signals and

Page 14: microsoft word - chapter 7xx.pdf

142

Identification by 16S and rDNA Sequence Analysis. Current

research, Technology and Applied Education topics in Applied

Microbiology and Microbial Biotechnology.

Humphris, E.C., 1956. Mineral composition and ash analysis. PP.

468-502. In modern methods of plant analysis.Vol. I. K.Peach

and M.V. Tracey, (Ed.), Springer-Verley, Berlin.

Inés E. García de Salamonea, Juan M. Funesa, Luciana P. Di

Salvoa, Jhovana S. Escobar-Ortegaa, Florencia D’Auriaa,

Lucia Ferrandob, Ana Fernandez-Scavinob, 2012. Inoculation

of paddy rice with Azospirillum brasilense and Pseudomonas

fluorescens: Impact of plant genotypes on rhizosphere

microbial communities and field crop production. Applied Soil

Ecology 61:196– 204.

J. Czaban, A. Gajda, B. Wroblewska, 2007. The Motility of Bacteria

from Rhizosphere and Different Zones of Winter Wheat Roots.

Polish J. of Environ. Stud. Vol. 16, No. 2,301-308.

Jacobs, M. J., W. M. Bugbee, and D. A. Gabrielson. 1985.

Enumeration, location, and characterization of endophytic

bacteria within sugar beet roots. Can. J. Bot. 63:1262- 1265.

Jacobson, CB., Pasternak, JJ., and BR. Glick,1994. Partial

purification and characterization of 1-amino-cyclopropane-1-

carboxylate deaminase from the plant growth promoting

rhizobacterium Pseudomonas putidaGR 12-2. Can. J.

microbial. 40:1019-1025.

Page 15: microsoft word - chapter 7xx.pdf

143

Jagadish, LK., Krishnan, VV., Shenbhagaraman, R.,and V.

Kaviyarasan,2009. Comparative study on the antioxidant,

anticancer and antimicrobial property of Agaricus bisporus

imbach before and after boiling. Afr. J. Biotechnol. 8, 654-

661.

James, E. K. 2000. Nitrogen fixation in endophytic and associative

symbiosis. Field Crops Research, 65(2-3), 197-209.

James, E.K., Olivares, F.L., 1998. Infection and colonization of

sugar cane and other graminaceous plants by endophytic

diazotrophs. Crit. Rev. Plant Sci. 17, 77-119.

James, E.K., Olivares, F.L., Baldani, J.I. andJ. Dobereiner, 1997.

Herbaspirillum, an endophytic diazotroph colonizing vascular

tissue in leaves of Sorghum bicolor L. Moench. Journal of

Experimental Botany 48:785-797.

Jeevajothi L, Mam AK, Pappiah CM and Rajagopalan R. Influence of

N,P,K and Azospirillum on yield of cabbage. South Indian

Hort.(1993). I: 270-272.

Joao Lucio Azevedo, Walter Maccheronijr, Jose Odair Pereira and

Welington Luiz de Araújo, 2000. Endophytic microorganisms:

a review on insect control and recent advances on tropical

plants. EJB Electronic Journal of Biotechnology ISSN: 0717-

3458 Vol.3 No.1, Issue of April 15.

Júlia Kuklinsky-Sobral, Welington Luiz Araújo1 Rodrigo Mendes,

IsaiasOlívio Geraldi,1 Aline Aparecida Pizzirani-Kleiner1an

Page 16: microsoft word - chapter 7xx.pdf

144

João LúcioAzevedo, 2004. Isolation and characterization of

soybean-associated bacteria and their potential for plant

growth promotion.Environmental Microbiology.

Julia, A., and Vorholt, 2012. Microbial life in the phyllosphere.

Nature Reviews Microbiology 10, 828-840.

Kami, I.A., Zargar, M.Y., and M.A.Chattoo, 2002.Effect of microbial

inoculants, chemical nitrogen and their combination on

brinjal (Solanum melongena L.) Veg. Sci. 29 (I) 87-89.

Khakipour, N. K. Khavazi, H. Mojallali, 1 2 3 3E. Pazira and 2H.

Asadirahmani, 2008. Production of Auxin Hormone by

Fluorescent Pseudomonads. American-Eurasian J. Agric. &

Environ. Sci., 4 (6): 687-692.

Khan, S., and A. Paraiari, 2012. Effect of n-fixing biofertilizers on

growth, yield and quality of chilli (capsicum annuum L.).

Kiran, J.,Vyakaranahal, B.S., Raikar, S.D.,Ravikumar, G.H., and

V.K. Deshpande, 2010.Seed yield and quality of brinjal as

influenced by crop nutrition. Indian J. Agric. Res., 44 (1):1–7.

kloepper, J.W., Schroth, MN. and T.D. Miller, 1980. Effects of

rhizosphere colonization by plant growth promoting

rhizobacteria a potato plant development and yield. J. of

Ecology and Epideminology.

Kloepper, J.W., Zablotowicz, R.M., Tipping, E.M., and R.Lifshitz,

1991. Plant growth promotion mediated by bacterial

rhizosphere colonizers. In: Keister, D.L., Cregan, P.B. (Eds.),

Page 17: microsoft word - chapter 7xx.pdf

145

The Rhizosphere and Plant Growth. Kluwer Academic

Publishing, Dordrecht, pp. 315– 326.

Kobayashi, D. Y., and J. D. Palumbo. 2000. Bacterial endophytes

and their effects on plants and uses in agriculture, p. 199-

233. In C. W. Bacon and J. F. White (ed.), Microbial

endophytes. Marcel Dekker, Inc., New York, N.Y.

Krechel A, Faupel A, Hallmann J, Ulrich A, Berg G (2002) Potato-

associated bacteria and their antagonistic potential towards

plant-pathogenic fungi and the plant-parasitic nematode

Meloidogyne incognita (Kofoid & White) Chitwood. Can. J.

Microbiol 48:772–786.

Kumar, K. B., and Khan, P. A. (1982). Peroxidase and polyphenol

oxidase in excised ragi (Eleusine coracana cv. PR 202) leaves

during senescence. Indian J. Exp. Bot., 20: 412-416.

Lamb, T. G., D. W. Tonkyn, and D. A. Kluepfel. 1996. Movement of

Pseudomonas aureofaciens. Pseudomonas aureofaciens from

the rhizosphere to aerial plant tissue. Can. J. Microbiol.

42:1112-1120.

Lambrecht, M., Y. Okon, A.V. Broek and J. Vanderleyden, 2000.

IAA: a reciprocal signaling molecule in bacteria-plant

interaction. Tren. Microbiol., 8: No. 7.

Lauren D.B. Roncato-Maccari a, Humberto J.O. Ramos , Fabio O.

Pedrosa ,Yedo Alquini , Leda S. Chubatsu a, Marshall G.

Yates , Liu U. Rigo , Maria Berenice R. Ste!ens , Emanuel M.

Page 18: microsoft word - chapter 7xx.pdf

146

Souza, 2003. Endophytic Herbaspirillum seropedicae

expresses nif genes in gramineous plants. FEMS Microbiology

Ecology 45, 39-47.

Lauren D.B., Roncato-Maccari , Humberto Ramos, J.O., Fabio, O.,

Pedrosa ,Leonardo Emanuel de Oliveira Costa; Marisa Vieira

de Queiroz; ArnaldoChaer Borges; Celia Alencar de Moraes:

ElzaFernandes de Araújo, 2012. Isolation and

characterization of endophytic bacteria isolated from the

leaves of the common bean (Phaseolus vulgaris) Braz. J.

Microbiol. vol. 43 No.4 São Paulo Oct./Dec. 2012.

Leben, C., G. C. Daft, and A. F. Schmitthenner. 1968. Bacterial

blight of soybeans: population levels of Pseudomonas glycinea

in relation to symptom development. Phytopathology

58:1143–1146.

Lee S, Flores-Encarnacion M, Contreras-Zentella M, Garcia-Flores

L, Escamilla JE & Kennedy C (2004) Indole-3-acetic acid

biosynthesis is deficient in Gluconacetobacter diazotrophicus

strains with mutations in cytochrome C biogenesis genes. J

Bacteriol 186:5384–5391.

Leinhos, V. and O. Vacek, 1994. Biosynthesis of auxins by

phosphate-solubilizing rhizobacteria from wheat and rye.

Microbiol. Res., 149: 31-35.

Lifshitz, R., Kloepper, JW., Kozlowski, M., Simonson, C., Carlson,

J., Tipping, EN., and I. Zaleska, 1987.Growth promotion of

Page 19: microsoft word - chapter 7xx.pdf

147

canola (rapeseed) seedlings by a strain of Pseudomonas

putida under gnotobioticconditions. Can. J. Microbiol.8:102–

106.

Lila NathBashyal, 2011.Response of cauliflower to nitrogen fixing

biofertilizer and graded levels of nitrogen. The Journal of

Agriculture and Environment Vol: 12. Linnaeus, C. 1753.

Species plantarum.

Lodewyckz, C.,Vangronsveld, J., and F.Porteus, 2002. Endophytic

bacteria and their potential applications. Crit. Rev. Plant Sci.

21: 583-606.

Long, S. R. (1989). Rhizobium-Legume Nodulation - Life Together in

the underground. Cell, 56(2), 203-214.

López-López, A., Rogel, M.A., Ormeño-Orrillo, E., Martínez-Romero,

J., and E. Martínez-Romero,2010. Phaseolus vulgaris seed-

borne endophytic community with novel bacterial species

such as Rhizobium endophyticum sp. nov. Syst.Appl.

Microbiol. 33, 322-327.

Lowry, OH. , Rosenbrough, NJ., Farr, A., and RJ. Randall, 1951.

Protein measurement with the Folin phenol reagent. J.

BiolChem.193:265-75.

Lucy, M., Reed, E., and B.R.Glick, 2004. Applications of free living

plant growth promoting rhizobacteria, Antonievan

Leeuwenhoek, 86:1-25.

Page 20: microsoft word - chapter 7xx.pdf

148

Luis E. Fuentes-Ramirez and Jesus Caballero-Mellado, 2005.

Bacterial Biofertilizers.

Maria Bintang, Ukhradiya M. Safira, Dwi Endah Kusumawati,

Fachriyan H. Pasaribu, and Tjandragita Sidhartha, 2014.

Analysis of 16S rRNA Sequence of Endophytic Bacteria Isolate

BS1 from Piper betle [L.] Stem. International Conference on

Agricultural, Environmental and Biological Sciences, April 24-

25.

Mark, J., Jacobs, William, M., Bugbee, David, A., Gabrielson, 1985.

Enumeration, location, and characterization of endophytic

bacteria within sugar beet roots. Canadian Journal of Botany,

63(7): 1262-1265.

Marquez-Santacruz, H.A., Hernandez-Leon, R., Orozco-Mosqueda,

M.C., Velazquez-Sepulveda, I. and G. Santoyo, 2010.

Diversity of bacterial endophytes in roots of Mexican husk

tomato plants (Physalis ixocarpa) and their detection in the

rhizosphere. Genet. Mol. Res. 9 (4): 2372-2380.

Mbai, FN., Magiri, E.N., Matiru, V.N., Nganga, J., and V.C.S.

Nyambati, 2013. Isolation and Characterisation of Bacterial

Root Endophytes with Potential to Enhance Plant Growth

from Kenyan Basmati Rice. American International Journal of

Contemporary Research Vol. 3.

McInroy JA, Kloepper JW (1994) Studies on indigenous endophytic

bacteria of sweetcorn and cotton. In: O’Gara F, Dowling DN,

Page 21: microsoft word - chapter 7xx.pdf

149

Boesten B (eds) Molecular ecology of rhizosphere

microorganisms. VCH, Weinheim, pp 19–28.

Misaghi IJ, Donndelinger CR (1990) Endophytic bacteria in

symptom-free cotton plants. Phytopathology 80:808–811.

Mishra, PK., Mishra, S., Selvakumar, G., JK, Bisht., Kundu, S., and

HS. Gupta, 2009. Co-inoculation of Bacillus thuringeinsis-

KR1 with Rhizobium leguminosarum enhances plant growth

and nodulation of pea (Pisum sativum L.) and lentil (Lens

culinaris L.). World J. Microbiol. Biotechnol. 25:753-761.

Misko, A.L. and JJ. Germida, 2002. Taxonomic and functional

diversity of pseudomonads isolated from the roots of field-

grown canola. Fems Microbiol Ecol. 42: 399-407.

Monique, A., Surette., Antony, V., Sturz, Rajasekaran, R., Lada.,

and Jerzy Nowak. Bacterial endophytes in processing carrots

(Daucus carota L. var. sativus): their localization, population

density, biodiversity and their effects on plant growth. Plant

and Soil 253:381–390, 2003.

Morris , C. , and J. Monier, 2003. The ecological significance of

biofilm formation by plant-associated bacteria. Annual Review

of Phytopathology 41: 429 – 453.

Morris, DL., 1948.Quantitative Determination of Carbohydrates

With Dreywood's Anthrone Reagent. Science. Mar 5;

107(2775): 254-255.

Page 22: microsoft word - chapter 7xx.pdf

150

Murty, M. G., and Ladha, J. K. (1988). Influence of Azospirillum

inoculation on the mineral uptake and growth of rice under

hydroponic conditions. Plant Soil108: 281–285.

Natarajan Amaresan, Velusamy Jayakumar, Krishna Kumar and

Nooruddin Thajuddin,2012. Isolation and characterization of

plant growth promoting endophytic bacteria and their effect

on tomato (Lycopersicon esculentum) and chilli (Capsicum

annuum) seedling growth. Ann. Microbiol. 62:805–810.

Nelson, LM. 2004. Plant growth promoting rhizobacteria (PGPR):

prospects for new inoculants. Crop Manage. doi: 10.1094/CM

-2004-0301-05-RV.

Nelson, N.A.1944, Photometric adaptation of Somgyi method for

determination of glucose. J. Biol. Chem., 135, 136-175.

Okon, Y., and C.A Labandera-Gonzalez, 1994. Agronomic

applications of Azospirillum: an evaluation of 20 years

worldwide field inoculation. Soil Biol. Biochem.26:1591-1601.

Okon,Y. 1985.Azospirillum as a potential inoculant for agriculture.

Trends Biotechnol. 3:223–228

Olaniyi, J.O., Akanbi, W.B.,. Olaniran, O.A.and O.T. Ilupeju, 2010.

The effect of organo-mineral and inorganic fertilizers on the

growth, fruit yield, quality and chemical compositions of okra.

Journal of Animal & Plant Sciences, Vol. 9, Issue 1: 1135-

1140.

Page 23: microsoft word - chapter 7xx.pdf

151

Olivares, F.L., Baldani, V.L.D., Reis, V.M., Baldani, J.I. and

Dobereiner, J. (1996). Occurrence of the endophytic

diazotrophs Herbaspirillum sp. in roots, stems and leaves,

predominantly of Gramineae. Biology and Fertility of Soils

21:197-200.

Omaye, S.T., Turbull, T.P., and HC. Sauberchich, 1979. Selected

methods for determination of ascorbic acid in cells, tissues

and fluids. Methods of Enzymol. 6: 3-11.

Pandey, P., and DK. Maheshwari,2007. Two-species microbial

consortium for growth promotion of Cajanus cajan. Curr. Sci.

92:1137-1142.

Paramhans Prasadand Abhishek Naik, 2013. Effect of Varying NPK

Levels and Bio-fertilizers on Growth and Yield of Okra

[Abelmoschus esculentus (L.) Moench] under Sustainable

Condition. Trends in Biosciences 6 (2): 167-169.

Parmar, N. and K. R. Dadarwal, 1999. Stimulation of nitrogen

fixation and induction of flavonoid-like compounds by

rhizobacteria. Journal of Applied Microbiology, 86: 36-44.

Patriquin, D. G., and J. Dobereiner. 1978. Light microscopy

observations of tetrazolium-reducing bacteria in the

endorhizosphere of maize and other grasses in Brazil. Can. J.

Microbiol. 24:734-742.

Page 24: microsoft word - chapter 7xx.pdf

152

Pham Quang Hung and K. Annapurna, 2004. Isolation and

characterization of endophytic bacteria in soybean (Glycine

sp.) Omonrice 12: 92-101.

Phyllis Ann Carder, 2010.Microbial communities of spinach at

various stages of plant growth from seed to maturity.

Pirttila A, Joensuu P, Pospiech H, Jalonen J & Hohtola A (2004)

Bud endophytes of Scots pine produce adenine derivatives

and other compounds that affect morphology and mitigate

browning of callus cultures. Physiol Plant 121: 305–312.

Pradeepa,V and Jennifer, M. 2013. Screening and Characterization

of Endophytic Bacteria Isolated from Tabernaemontana

divaricata plant for cytokinin production. Research Article.

Advanced Bio Tech. ISSN: 2319-6750 Vol.13

Prasad Gyaneshwar, Euan James, K., Natarajan Mathan, Pallavolu

Reddy, M., Barbara Reinhold-Hurek and K. Jagdish Ladha,

2001. Endophytic Colonization of Rice by a Diazotrophic

strain of Serratia marcescens. J. Bacteriol. 2001, 183(8):2634-

2645.

Prikryl, Z., V. Vancura and M. Wrust, 1985. Auxin formation by

rhizosphere bacteria as a factor of root growth. Biol.

Plantarum, 27: 159-163.

Quadt-Hallmann, J. Halmann, and J.W. Kloepper. 1997. Bacterial

endophytes in cotton: and interaction with other plant

associated bacteria. Can. J. Microbiol.43:254-259.

Page 25: microsoft word - chapter 7xx.pdf

153

Rajendran,G., Sing, F., Desai, AJ., and G. Archana,2008.Enhanced

growth and nodulation of pigeon pea by co-inoculation of

Bacillus strains with Rhizobium spp. Bio resource

Technol.Jul;99(11):4544-50.

Ramakrishnan, K., and G. Selvakumar, 2011. Effect of biofertilizers

on enhancement of growth and yield on Tomato

(Lycopersicum esculentum Mill.) International Journal of

Research in Botany.

Raman Ramesh and Gauri Savita Phadke, 2012. Rhizosphere and

endophytic bacteria for the suppression of eggplant wilt

caused by Ralstonia solanacearum. Crop Protection 37:35-41.

Ramesh, R., Joshi, A.A., and M. P. Ghanekar, 2009.

Pseudomonads: major antagonistic endophytic bacteriato

suppress bacterial wilt pathogen, Ralstonia olanacearumin the

eggplant (Solanum melongena L.). World J. Microbiol

Biotechnol. 25:47–55.

Rasul G, Mirza M. S, Latif F, Malik K.A. (1998) Identification of

plant growth hormones produced by bacterial isolates from

rice, wheat and kallar grass. In: Malik K.A., Mirza M.S.,

Ladha JK (eds) Nitrogen fixation with non-legumes. Kluwer,

Dordrecht, pp 25–37.

Ravikumar Patil, HS., Vasantha Naik, T., Vijay Avin, BR., and HA.

Sayeswara, 2013. Isolation and molecular characterization of

Bacillus megaterium isolated from various agro climatic zones

Page 26: microsoft word - chapter 7xx.pdf

154

of Karnataka and its effect on medicinal plant Rutagradiolus.

Current Research in Microbiology and Biotechnology. Vol. 1,

No. 4 (2013): 173-182.

Reinhold-Hurek.B., T. Hurek, M. Gillis, B. Hoste, M. Vancanney, K.

Kersters and J. De Ley, 1993.Azoarcus gen. nov., nitrogen

fixing probacteria associated with roots of kallar grass

(Leptochloa fusca, (L). Kuntho, and description of two species:

Azoarcus indigens sp. nov. and Azoarcus communis sp. nov.

Int. J. Syst. Bacteriol., 43:574-584).

Rennie, RJ. 1980. Dinitrogen-fixing bacteria: computer-assisted

identification of soil isolates. Can J Microbiol 26:1275–1283.

Robert P.Ryan, Keiran Germaine, Ashley Fanks, David J.Rayan and

David N. Dowling. 2007. Bacterial endophytes recent

developments and application.

Roos, I.M.M., and M.J. Hattingh, 1983. Scanning electron

microscopy of Pseudomonas syringae pv. mors-pmnorum on

sweet cherry leaves. Phytopathol. Z. 108: 18 -25.

Rosenblueth, M., and E. Martínez-Romero, 2006. Bacterial

endophytes and their interactions with hosts. Molecular

Plant-Microbe Interactions 19 : 827 – 837.

Rudrappa, T., Czymmek, K., Pare, P.W. and H.P. Bais, 2008. Root

secreted malic acid recruits beneficial soil bacteria. Plant

Physiology 148 : 1547 – 1556.

Page 27: microsoft word - chapter 7xx.pdf

155

Rumpa Biswas Bhattacharjee, Qbal Singh and S. N.

Mukhopadhyay, 2008. Use of nitrogen-fixing bacteria as

biofertiliserfor non-legumes: prospects and challenges. Appl.

Microbiol. Biotechnol. 80:199–209.

Rupa Giri and Surjit Singh Dudeja, 2013. root colonization of root

and nodule endophytic bacteria in legume and non legume

plants grown in liquid medium. Journal of Microbiology

Research and Reviews. Vol. 1(6): 75-82.

Ruppel, S., Krumbein, A., and M. Schreiner, 2008. Composition of

the phyllospheric microbial populations on vegetable plants

with different glucosinolate and carotenoid compositions.

Microbial Ecology. 56:364-372.

S. Samavat, S. Samavat, S. Mafakheri and M. Javad Shakouri,

2012. Promoting Common Bean Growth and Nitrogen

Fixation by the Co-Inoculation of Rhizobium and

Pseudomonas fluorescens Isolates. Bulgarian Journal of

Agricultural Science, 18 (No 3) 2012, 387-395.

Sajjad Mirza, M., Samina Mehnaz, Philippe Normand, Claire

Prigent-Combaret, Yvan Moenne-Loccoz, Rene BallyKauser

Malik, 2006. Molecular characterization and PCR detection of

a nitrogen-fixing Pseudomonas strain promoting rice growth.

Biol Fertil Soils (2006) 43: 163-170.

Samrah Tariq, Ruqqaya Khan, Viqar Sultana, Jehan ARA, and Syed

Ehteshamul- Haque, 2009. Utilization of endo-root

Page 28: microsoft word - chapter 7xx.pdf

156

fluorescent Pseudomonas of chilli for the management of root

diseases of chilli. Pak. J. Bot., 41(6): 3191-3198.

Sandeep. C., Venkat, R., Raman, A., Radhika, M., Thejas, MS.,

Sanjeev Patra, Tejaswini Gowda, Suresh, C.K., and S.R.

Mulla, 2011. Effect of inoculation of Bacillus megaterium

isolates on growth, biomass andnutrient content of

Peppermint. Journal of Phytology, 3(11): 19-24.

Sarwar, M. and R..J. Kremer, 1995. Determination of bacterially

derived auxins using a micro plate method. Lett. Appl.

Microbiol., 147: 282-285.

Schaad, N. W. 1980. Laboratory Guide for the Identification of Plant

Pathogenic Bacteria. The American Phytopathological Society,

st. Paul, MN. 72 pp. (p. 3).

Schloter, M., G. Kirchhof, U. Heinzmann, J. Dobereiner and A.

Hartmann, 1994. Immunological studies of the whaet root

colonization by Azospirillum brasilense strains SP7 and SP245

using strain-specific monoclonal antibodies. In: nitrogen

fixation with non legumes. Hegazi, N.A., Fayez, M., and

Monib, M., Eds., pp:291-297.

Sethi, S.K., and S.P. Adhikary, 2009. Efficacy of region specific

Azotobacter strain vegetative growth and yield of Solanum

melongena, Lycopersicum esculentum and Capsicum annuum.

Journal of Pure and Applied Microbiology 2009 Vol. 3 No. 1

pp. 331-336.

Page 29: microsoft word - chapter 7xx.pdf

157

Shaheen, A.M., Fatma,A., Rizk Omiama, Sawan, M., and A. A.

Ghoname, 2007. The integrated use of bio-inoculants and

chemical nitrogen fertilizer on growth, yield and nutritive

value of two okra (Abelmoschus Esculentus, L.). Cultivars.

Australian Journal of Basic and Applied Sciences,1(3): 307-

312.

Shanmuga Priya, M., Reyaz Farooq, Divyashree, K., Satheesh Babu,

A.K., Lakshmi Prabha, M., and M.P. Prasad, 2013. pilot scale

production of Azotobacter biofertilizer and its effect on the

growth parameters of Ocimum sanctum. International Journal

of Engineering and Advanced Technology IJEAT) ISSN: 2249 –

8958, Volume-2, Issue-4.

Shishido M, Loeb BM, Chanway CP (1995) External and internal

root colonization of lodge pole pine seedlings by two growth-

promoting Bacillus strains originated from different root

microsites. Can J Microbiol 41:707–713.

Shukla, V and Naik LB (1993). Agro-techniques of solanaceous

vegetables, in ‘Advances in Horticulture’, Vol.5, Vegetable

Crops, Part 1 (K. L. Chadha and G. Kalloo, eds.), Malhotra

Pub. House, New Delhi, p. 365.

Simarmata, R., Lekatompessy, S. and H. Sukiman, 2007. Isolasi

mikroba endofitik dati tanaman obat sambung nyawa

(Gymura procumbens) dan analisis potensinya sebagai

antimikroba”, Berk Penel Hayati, Vol. 13, pp 85-90.

Page 30: microsoft word - chapter 7xx.pdf

158

Singh,JK., Anant Bahadur, Singh, NK., andTB., Singh. 2010. Effect

of using varying level of npk and biofertilizers onvegetative

growth and yield of okra (Abelmoschus esculentus(L.)

MOENCH). Veg. Sci. 37(1):100-101.

Stephane Compant, Birgit Reiter, Angela Sessitsch, Jerzy Nowak,

Christophe Clément and Essaïd Ait Barka, 2005. Endophytic

Colonization of Vitis vinifera L. Burkholderia sp. Strain PsJN

by Plant Growth-Promoting Bacterium. Appl. Environ.

Microbiol. 71(4):1685-1693.

Sturz, A. V., Christie, B. R. and J.Nowak, 2000. Bacterial

endophytes: Potential role in developing sustainable systems

of crop production. Crit. Rev. Plant Sci. 19:1-30.

Surette , M.A.,. Sturz, AV., Lada, R.R. and J. Nowak, 2003.

Bacterial endophytes in processing carrots (Daucus carota L.

var. sativus):Their localization, population density,

biodiversity and their effects on plant growth. Plant and Soil

253 : 381 – 390 .

Tadych, M. and J. F. White, 2009.Endophytic Microbes, pages 431-

442.

Tamura K, J.Dudley, M.Nei, and S. Kumar, 2007. MEGA4:

Molecular Evolutionary Genetics Analysis (MEGA) software

version 4.0.Mol Biol Evol. 24(8):1596-1599.

Tian Xue-liang, 2006-2008. (Henan Institute of Science and

Technology, Xinxiang, Henan 453003) isolation and

Page 31: microsoft word - chapter 7xx.pdf

159

Identification Endophytic Bacteria from Seeds and Seedling of

Cucumber. Journal of Anhui Agricultural sciences.

Ting, ASY., Meon, S., Kadir, J., Radu, S., and G. Singh, 2008.

Endophytic microorganisms as potential growth promoters of

banana. Bio-Control 53:541–553.

Toyota K. and Ikeda K. Relative importance of motility and

antibiosis in the rhizoplane competence of a biocontrol agent

Pseudomonas fluorescens Me1RC 2Rif. Biol. Fert. Soils 25,

416, 1997.

Tripathi, J.1., Singh, Tiwari, A. K., and Menaka, 2013. Comparative

effectiveness of different isolates of Azospirillum on nitrogen

fixation and yield and yield attributing characters of tomato

in Chhattisgar. African Journal of Microbiology Research.

Vol.7(28). pp. 3615-3620, 12 July.

Ulrich, K., Ulrich, A., and D. Ewald,2008. Diversity of endophytic

bacterial community in popular growth under field

conditions. FEMS Microbiol. Eco.163:169-180.

Umesh Kumar, Arjun Singh., and T. SivaKumar, 2011.Isolation and

screening of endophytic actinomycetes from differentparts of

Emblica officinalis. Annals of Biological Research, 2011, 2 (4):

423-434.

Urquiaga, S., Cruz, K. H. S., and R. M. Boddey, 1992. Contribution

of Nitrogen Fixation to Sugar-cane - N-15 and nitrogen

Page 32: microsoft word - chapter 7xx.pdf

160

balance estimates. Soil Science Society of America Journal,

56(1), 105-114.

Verma SC, Ladha JK and Tripathi AK (2001) Evaluation of plant

growth promoting and colonization ability of endophytic

diazotrophs from deep water rice. J Biotechnol 91: 127–141.

Vermeiren H, Willems A, Schoofs G, de Mot R, Keijers V, Hai W,

Vanderleyden J (1999) The rice inoculant strain Alcaligenes

faecalis A15 is a nitrogen-fixing Pseudomonas stutzeri. Syst

Appl Microbiol 22:215–224.

Vessey, J. K., 2003, Plant growth promoting rhizobacteria as

biofertilizers, Plant Soil 255:571-586.

Vessey, J.K., 2003. Plant growth promoting rhizobacteria as

biofertilizers. Plant and Soil. 255:571-586.43.

Wakelin S, Warren R, Harvey P & Ryder M (2004) Phosphate

solubilization by Penicillium spp. closely associated with

wheat roots. Bio Fert Soils 40: 36–43.

Wani, S.P., 1990. Inoculation with associative nitrogen fixing

bacteria: Role in cereal grain production improvement. Indian

J. Microbiol. 30, 363–393.

Watanabe I, So R, Ladha JK, Katayama-Fujimura Y, Kuraishi H

(1987) A new nitrogen-fixing species of pseudomonad:

Pseudomonas diazotrophicus sp. nov. isolated from the root of

wetland rice. Can J Microbiol 33:670–678.

Page 33: microsoft word - chapter 7xx.pdf

161

Weber,O.B., Baldani, V.L.D., Teixeira, K.R.S., Kirchhof, G., Baldani,

J.I., and J. Dobereiner, 1999. Isolation and characterization

of diazotrophic bacteria from banana and pine apple plants.

Plant and Soil 210:103–113.

Wilson D. 1995. Endophyte: the evolution of a term, and

clarification of its use and definition. Oikos 73: 274–276.

Wuo, S.C., Cao, Z.H., Lib, Z.G., Cheunga, K.C., and M.H. Wonga,

2005. Effects of biofertilizer containing N-fixer, P and K

solubilizers and AM fungi on maize growth: a greenhouse

trial. Geoderma. 125:155–166.

Xu, D., Xiuying, XIA., Na XU, and AN. Lijia, 2007. Isolation and

identification of a novel endophytic bacterial strain with

antifungal activity from the wild blueberry Vaccini

umuliginosum. Anal Microbiol 57:673–676.

Yang, C.-H., Crowley, D., Borneman, E.J.,and N. T. Keen, 2001.

Microbial phyllosphere populations are more complex than

previously realized. PNAS. 98:3889-3894.

Yaseem, T., Hameed, S., Tariq, M., and J. Iqbal J 2012a. Vigna

radiata Root Nodule Associated Mycorrhizae and its Helping

Bacteria for Improving Crop Productivity. Pak. J. Bot. 44:87-

94.

Yasmeen, T., Hameed, S., Tariq, M., and S. Ali, 2012b. Significance

of arbuscular mycorrhizal and bacterial symbionts in a

Page 34: microsoft word - chapter 7xx.pdf

162

tripartite association with Vigna radiata. Acta Physiol. Plant

DOI:

Yingwu Shi, Kai Lou and Chun Li, 2009. Isolation, quantity

distribution and characterization of endophytic

microorganisms within sugar beet. African Journal of

Biotechnology Vol. 8 (5), pp. 835-840.

Yingwu Shi; Kai Lou; Chun Li, 2010. Growth and photosynthetic

efficiency promotion of sugar beet ( Beta vulgaris L.) by

endophyticbacteria. photosynthesis Research; July, Vol. 105

Issue 1, p5, Academic Journal.

Yong Wan., ShenglianLuo., Jueliang Chen., Xiao Xiao., Liang Chen.,

Guangming Zeng., Chengbin Liu., Yejuan He, 2012. Effect of

endophyte-infection on growth parameters and Cd-induced

phytotoxicity of Cd-hyperaccumulator Solanum nigrum L.

Chemosphere 89 :743–750.

Yordi, D.M., and K.L. Ruoff, 1981. Dissimilatory nitrate reduction to

ammonia. PP. 171-190. In dinitrification, nitrification and

atmospheric nitrous oxide. C.C. Delviche, Ed. John Wiley and

sons, New york.

ZehraEkin, FarukOguz, Murat Erman and Erdalogun, 2009.The

effect of Bacillus sp. OSU-142. Inoculation atvarious levels of

nitrogen fertilization on growth, tuber distribution and yield

of potato (Solanum tuberosum L.). African Journal of

Biotechnology Vol. 8 (18), pp. 4418-4424, 15 September.

Page 35: microsoft word - chapter 7xx.pdf

163

Zhou Gang-Quan., Zhang Xiu-Dong., Liu Qiong-Guang., and Feng

Hang, 2007.The dynamic of endophytic bacteria at different

growth stage of tomato and biological control of tomato

bacterial wilt.

Zhou, F.Y. and C.B.You, 1988. Interaction between diazotrophic

bacteria Alcaligenes faecalis and host plant rice. Sci. Agric.

Sinica, 21:7-13.

Zinniel, D.K., 2002. et al., “Isolation and characterization of

endophytic colonizing bacteria from agronomic crops and

prairie plant”, Appl. Environ. Microbiol., Vol. 68, No.5, pp

2198–2208.

Zolg, W., and JCG. Ottow, 1975. Pseudomonas glathei sp. nov. a

new nitrogen scavenging rod isolated from acid lateritic relicts

in Germany. Z Allg Mikrobiol 15:287–299.