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Microbial Growth Kinetics Lecture 2 Tahir
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Microbial Growth Kinetics - WELCOME aboard UG3! · PPT file · Web view · 2012-09-20Growth: basic concepts. Anabolism = biosynthesis . Catabolism = reactions to recover...

Mar 12, 2018

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Page 1: Microbial Growth Kinetics - WELCOME aboard UG3! · PPT file · Web view · 2012-09-20Growth: basic concepts. Anabolism = biosynthesis . Catabolism = reactions to recover energy (often

Microbial Growth Kinetics

Lecture 2

Tahir

Page 2: Microbial Growth Kinetics - WELCOME aboard UG3! · PPT file · Web view · 2012-09-20Growth: basic concepts. Anabolism = biosynthesis . Catabolism = reactions to recover energy (often

Fermenters

Page 3: Microbial Growth Kinetics - WELCOME aboard UG3! · PPT file · Web view · 2012-09-20Growth: basic concepts. Anabolism = biosynthesis . Catabolism = reactions to recover energy (often

Fermentation Process

Page 4: Microbial Growth Kinetics - WELCOME aboard UG3! · PPT file · Web view · 2012-09-20Growth: basic concepts. Anabolism = biosynthesis . Catabolism = reactions to recover energy (often

Fermentation Technology-> Fermentation: from latin -> ”fervere” -> to boil (describing the

anaerobic process of yeast producing CO2 on fruit extracts)

-> Nowadays: more broad meaning!!!!

The five major groups of commercially important fermentations:

-> Process that produces microbial cells (Biomass) as a product-> Process that produces microbial enzymes as a product-> Process that produces microbial metabolites (primary or secondary) as a

product-> Process that produces recombinant products (enzymes or metabolite) as a

product -> Process that modifies a compound that is added to the fermentation –

transformation process

Page 5: Microbial Growth Kinetics - WELCOME aboard UG3! · PPT file · Web view · 2012-09-20Growth: basic concepts. Anabolism = biosynthesis . Catabolism = reactions to recover energy (often

Growth: basic concepts

Anabolism = biosynthesis

Catabolism = reactions to recover energy (often ATP)

Precursors

Page 6: Microbial Growth Kinetics - WELCOME aboard UG3! · PPT file · Web view · 2012-09-20Growth: basic concepts. Anabolism = biosynthesis . Catabolism = reactions to recover energy (often

Regeneration of NAD+

FermentationRespiration

No added terminal e--acceptor Oxidant = terminal e--acceptorATP: substrate level phosphorylationATP: (e--transport) oxidative phosphoryl.

Glucose

2 Glyceraldehyde-3-P 2 ATP2 NADH

2 Pyruvate

2 Lactate+ 2 H+

Acetaldehyde+2 CO2

2 Ethanol

Acetate+ Formate

H2 + CO2

Glucose2 ATP2 NADH2 Pyruvate

2 Acetyl-CoACO2

Citric acidcycle

CO2GTPNADH, FADH

Cytoplasmic membraneout

inATP

H+H+H+H+H+H+

O2H2O

1 Glucose 2 ATP 1 Glucose 38 ATPSlow growth/low biomass yield Fast growth/high biomass yield

Page 7: Microbial Growth Kinetics - WELCOME aboard UG3! · PPT file · Web view · 2012-09-20Growth: basic concepts. Anabolism = biosynthesis . Catabolism = reactions to recover energy (often

Major functions of a fermentor

1) Provide operation free from contamination;2) Maintain a specific temperature;3) Provide adequate mixing and aeration;4) Control the pH of the culture;5) Allow monitoring and/or control of dissolved oxygen;6) Allow feeding of nutrient solutions and reagents;7) Provide access points for inoculation and sampling;8) Minimize liquid loss from the vessel;9) Facilitate the growth of a wide range of organisms.(Allman A.R., 1999: Fermentation Microbiology and Biotechnology)

Page 8: Microbial Growth Kinetics - WELCOME aboard UG3! · PPT file · Web view · 2012-09-20Growth: basic concepts. Anabolism = biosynthesis . Catabolism = reactions to recover energy (often

Microbial Growth Kinetics

• Fermentation can be carried out as:1. Batch2. Continuous3. Fed-batch processesMode of operation is to a large extent dictated

by the type of product being produced.

Page 9: Microbial Growth Kinetics - WELCOME aboard UG3! · PPT file · Web view · 2012-09-20Growth: basic concepts. Anabolism = biosynthesis . Catabolism = reactions to recover energy (often

Biotechnological processes of growing microorganisms in a bioreactor

Page 10: Microbial Growth Kinetics - WELCOME aboard UG3! · PPT file · Web view · 2012-09-20Growth: basic concepts. Anabolism = biosynthesis . Catabolism = reactions to recover energy (often

Batch Culture

Page 11: Microbial Growth Kinetics - WELCOME aboard UG3! · PPT file · Web view · 2012-09-20Growth: basic concepts. Anabolism = biosynthesis . Catabolism = reactions to recover energy (often
Page 12: Microbial Growth Kinetics - WELCOME aboard UG3! · PPT file · Web view · 2012-09-20Growth: basic concepts. Anabolism = biosynthesis . Catabolism = reactions to recover energy (often
Page 13: Microbial Growth Kinetics - WELCOME aboard UG3! · PPT file · Web view · 2012-09-20Growth: basic concepts. Anabolism = biosynthesis . Catabolism = reactions to recover energy (often
Page 14: Microbial Growth Kinetics - WELCOME aboard UG3! · PPT file · Web view · 2012-09-20Growth: basic concepts. Anabolism = biosynthesis . Catabolism = reactions to recover energy (often

Growth cycle of yeast during beer

fermentation

From: Papazian C (1991), The New Complete Joy of Home Brewing.

Page 15: Microbial Growth Kinetics - WELCOME aboard UG3! · PPT file · Web view · 2012-09-20Growth: basic concepts. Anabolism = biosynthesis . Catabolism = reactions to recover energy (often

Alternate modes of energy generation

(H2S, H2, NH3)(in autotrophs)

FermentationFermentation

Page 16: Microbial Growth Kinetics - WELCOME aboard UG3! · PPT file · Web view · 2012-09-20Growth: basic concepts. Anabolism = biosynthesis . Catabolism = reactions to recover energy (often

Fermentation Technology

-> Process that produces microbial cells (Biomass) as a product mainly for -> baking industry (yeast) -> human or animal food (microbial cells)

Page 17: Microbial Growth Kinetics - WELCOME aboard UG3! · PPT file · Web view · 2012-09-20Growth: basic concepts. Anabolism = biosynthesis . Catabolism = reactions to recover energy (often

Fermentation Technology

Page 18: Microbial Growth Kinetics - WELCOME aboard UG3! · PPT file · Web view · 2012-09-20Growth: basic concepts. Anabolism = biosynthesis . Catabolism = reactions to recover energy (often

Fermentation Technology

-> Process that produces microbial enzymes as a product

mainly for -> food industry

Page 19: Microbial Growth Kinetics - WELCOME aboard UG3! · PPT file · Web view · 2012-09-20Growth: basic concepts. Anabolism = biosynthesis . Catabolism = reactions to recover energy (often

Fermentation Technology

-> Process that produces microbial metabolites (primary or secondary) as a product

Page 20: Microbial Growth Kinetics - WELCOME aboard UG3! · PPT file · Web view · 2012-09-20Growth: basic concepts. Anabolism = biosynthesis . Catabolism = reactions to recover energy (often

Fermentation Technology

-> Process that produces microbial metabolites (primary or secondary) as a product

Page 21: Microbial Growth Kinetics - WELCOME aboard UG3! · PPT file · Web view · 2012-09-20Growth: basic concepts. Anabolism = biosynthesis . Catabolism = reactions to recover energy (often

Fermentation Technology

-> Process that produces microbial metabolites (primary or secondary) as a product

Page 22: Microbial Growth Kinetics - WELCOME aboard UG3! · PPT file · Web view · 2012-09-20Growth: basic concepts. Anabolism = biosynthesis . Catabolism = reactions to recover energy (often

Fermentation Technology

-> Process that produces microbial metabolites (primary or secondary) as a product

Page 23: Microbial Growth Kinetics - WELCOME aboard UG3! · PPT file · Web view · 2012-09-20Growth: basic concepts. Anabolism = biosynthesis . Catabolism = reactions to recover energy (often

Continuous cultures

Page 24: Microbial Growth Kinetics - WELCOME aboard UG3! · PPT file · Web view · 2012-09-20Growth: basic concepts. Anabolism = biosynthesis . Catabolism = reactions to recover energy (often
Page 25: Microbial Growth Kinetics - WELCOME aboard UG3! · PPT file · Web view · 2012-09-20Growth: basic concepts. Anabolism = biosynthesis . Catabolism = reactions to recover energy (often

Fed-Batch CultureA fed-batch is a biotechnological batch process which is based on feeding of a growth limiting nutrient substrate to a culture. The fed-batch strategy is typically used in bio-industrial processes to reach a high cell density in the bioreactor. Mostly the feed solution is highly concentrated to avoid dilution of the bioreactor. The controlled addition of the nutrient directly affects the growth rate of the culture and allows to avoid overflow metabolism (formation of side metabolites, such as acetate for Escherichia coli, lactic acid in cell cultures, ethanol in Saccharomyces cerevisiae), oxygen limitation (anaerobiosis).

Page 26: Microbial Growth Kinetics - WELCOME aboard UG3! · PPT file · Web view · 2012-09-20Growth: basic concepts. Anabolism = biosynthesis . Catabolism = reactions to recover energy (often

Batch culture versus continuous culture

Continuous systems: limited to single cell protein, ethanol productions, and some forms of waste-water treatment processes.

Batch cultivation: the dominant form of industrial usage due to its many advantages.

(Smith J.E, 1998: Biotechnology)

Page 27: Microbial Growth Kinetics - WELCOME aboard UG3! · PPT file · Web view · 2012-09-20Growth: basic concepts. Anabolism = biosynthesis . Catabolism = reactions to recover energy (often

Advantages of batch culture versus continuous culture

1) Products may be required only in a small quantities at any given time.

2) Market needs may be intermittent.3) Shelf-life of certain products is short.4) High product concentration is required in broth for optimizing

downstream processes.5) Some metabolic products are produced only during the stationary

phase of the growth cycle.6) Instability of some production strains require their regular

renewal.7) Compared to continuous processes, the technical requirements

for batch culture is much easier.