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Gene, chromosome,DNA DNA
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Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

Dec 26, 2015

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Gavin Burns
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Page 1: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

Gene, chromosome,DNA

DNA

Page 2: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

Patterns of Inheritance• Complete Dominance• Incomplete Dominance• Codominance• Pleitrophy• Epistasis• Multiple Alleles• Polygenic• Sex Linked• Sex influenced• multifactorial

Page 3: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

Blending theory

• Genetic materials are like liquids

Particulate theory

Hereditary units are discrete units or genes

Page 4: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

Mendel

• Made genetics quantifiable

• Experimental crosses

• Character- detectable inherited feature

• Trait-variation of a character

Page 5: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

• True breeding or pure bred- always produced the same trait

• Hybrids produced different variants

WHY

Page 6: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.
Page 7: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

Nature vs Nurture

• What role is played by genetics?

• What role is played by the environment?

Page 8: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

A a

AA aa

a aAA

aaAA

Gametes (A,a) segregate

Page 9: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

Principles of Heredity• Alternative versions of genes (alleles)

account for variations in a trait.• For each character, an organism inherits

two alleles, one from each parent.• If alleles differ, then the dominant will be

fully expressed over the recessive.• The two alleles segregate (separate)

during gamete formation.• Alleles on different chromosomes

segregate independently of one another

Page 10: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

•A •a

•B •b

•Independent Assortment and Segregation

•For an organism of the genotype AaBb

Page 11: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

•Meiosis results in the following:

Page 12: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

•a •A

•b •B

•Independent Assortment and Segregation

•For an organism of the genotype AaBb

•ab •AB

Page 13: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

•A •a

•B •b

•Independent Assortment and Segregation

•For an organism of the genotype AaBb

•AB •ab

Page 14: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

•a •A

•B •b

•Independent Assortment and Segregation

•For an organism of the genotype AaBb

•aB •Ab

Page 15: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

•a •A

•b •B

•Independent Assortment and Segregation

•For an organism of the genotype AaBb

•ab •AB

Page 16: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

Calculate the posssible gametes from the following crossesBbHh, DDHh, BbDd, bbhh

•BH, Bh, bH, bh

•DH,Dh

•BD, Bd, bD, bd

•bh

Page 17: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

Genetic Crosses and Problems

• Monohybrid

• Dihybrid

• Pedigree

Page 18: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

Monohybrid Cross-consider onlyone trait

B B

b Bb Bb

b Bb BbOffspring F1Gametes

Gametes

Page 19: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

Monohybrid Cross-consider onlyone trait

B b

B BB Bb

b Bb bbOffspring F2Gametes

Gametes

Genotypic ratio 1 : 2 : 1Phenotypic ratio 3 : 1

Page 20: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

Law of Multiplication of Probabilities

• Bb ½ B or ½ b

XBb ½ B or ½ b

1/4BB + 1/2Bb + ¼ bb

Page 21: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

• BB ½ B or ½ B

XBb ½ B or ½ b

½ BB + ½ Bb

Page 22: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

Gametes BW Bw bW bwBW BBWW BBWw BbWW BbWwBw BBWw BBww BbWw BbwwbW BbWW BbWw bbWW bbWwbw BbWw Bbww bbWw bbww

Dihybrid cross-cross two traitsheterozygous black wings

BbWw X BbWwPhenotypic Ratio 9:3:3:1

Page 23: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

Crossing over

During prophase of meiosis homologous pairs may exchange

genetic material.

•TETRAD or synapsis

Page 24: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.
Page 25: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

New Genetic Combinations

• Recombination during fertilization brings together two sets of genetic instructions

• Meiosis-crossing over brings about new combinations

• Random genetic mutation can result in random genetic change

Page 26: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

Autosomal Complete Dominance

• One gene is able to dominate the other recessive allele

• Example all offspring express B as black fur over b white

B

B

b b

Bb Bb

Bb Bb

All black offspring

Page 27: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

Autosomal Dominant

•Huntingtons Disease

•Achondroplasia

•Certain Form of Breast Cancer

Page 28: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

•Galactosemia, Albinism

•Sickle cell Anemia

•Cystic Fibrosis

•Tay-Sachs

•PKU-phenylketonuria

Page 29: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

Autosomal Dominant Patterns

Page 30: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

Autosomal Recessive Pattern

Gene is unable to express itself unless it is in a homozygous condition.

Page 31: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.
Page 32: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

? ?

C

C

c

c c cCc

CCCc

Page 33: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

• Incomplete dominance-

both genes are expressed as intermediate forms

Page 34: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

R R

W

W

RW

RR-red, WW-white

RW-pink

RW

RWRW

Page 35: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

R R

R’

R’

RR’ RR’

RR’ RR’

Red crossed with whiteresults in pink flowers

Page 36: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

Incomplete dominance

• Both genes are unable to be expressed ,the heterozygote is intermediate in expression

R’ R’

R’

R’

R’

R’

R

R R R R

R

Page 37: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

CODOMINANCE- each gene of the allele is expressed

The A,B, O Blood typeshows Codominance

genotypes

iAiA, iBiB, iOiO,iAiB, iAiO ,and iBiO

iA iA

iB

iB

iAiB

iAiB

iAiB

iAiB

Page 38: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

Blood Groups

A B O AB

iAiA iAiO

iBiB iBiO

iOiO iAiB

Type

Genotypes

Page 39: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.
Page 40: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

Multiple Alleles

• In this pattern more than two alleles are possible for a trait.

• Blood Groups or types are an example of this also.

Page 41: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

Blood Groups

A B O AB

iAiA iAiO

iBiB iBiO

iOiO iAiB

Type

Genotypes

Page 42: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

What about RH Factor

• Single dominant gene produces an RH antigen labeled +

• RH negative individuals are homozygous recessive - -

Page 43: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

Polygenic• More than one pair of genes

control the trait

• Genes working together

• Expression is varied

• Race is an example

• Most common form of inheritance

Page 44: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

Pleitrophy

• A gene which affects an organism in many ways

• Multiple phenotypic effects

• Ex. Sickle-cell anemia, albinism

Page 45: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

Epistasis

• A gene at one location alters the phenotypic expression of another gene

• Coat color in some mammals

Page 46: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

Polygenic Inheritance

• Additive effect of two or more genes on phenotypic expression

• Phenotypic expression varies along a continuum

• Skin and eye pigmentation

Page 47: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

Multifactorial

• Influenced by both environment and heredity

Page 48: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

Sex or X linked

Inheritance- genes that are carried on the X

chromosome

Page 49: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

Barr Bodies

• When multiple X chromosomes are present one or more will be inactivated leaving only one

• The inactive X forms a dark staining Barr body

• Random inactivation can result in mosaics

Page 50: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

Sex-Linked Disorders

• Genes carried on the X chromsome

• Males only have one- more likely to have trait

• Females can be carriers

• Most important diseases are recessive

Page 51: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

Red-green color blindness, hemophilia

Page 52: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.
Page 53: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

Sex linked Patterns

Page 54: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

Sex influenced• Genomic imprinting-gene

expression is dependent on the sex of the individual in which the gene originated

Page 55: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

Prader-Willi- deletion of paternal chromosome 15

Angelman syndrome- if inherited from mother

Fragile X syndrome- fragment on X caused by triplet repeats

Page 56: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

•PPLL X ppll

•F1 all PpLl

•F2 PpLl X PpLl

•From 500 offspring

•281 purple long

•93 purple round

•93 red long

•31 red round

•Should yield a

•9:3:3:1 ratio

•F2 hybrid crosses

Page 57: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

Linkage Maps

• Map units or centimorgans = cross over or recombination frequencies

Page 58: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

Based on crossover frequencies or the

frequencies that genes are recombined in ways that suggest they are linked

together.Measured in linkage units or

Morgan Units

Page 59: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

C

18%

13%

5%

•6 %

AB D

C----7----A----6----B---5--D

Page 60: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

*If the ratios deviate from the expected ratio

they could indicate that genes are linked.

*If genes are linked they are inherited together

unless they are separated as a result of crossing

over. Resulting in 1:1:1:1 ratios

*The frequency that these genes are then separated represents the relative distance they are from each other.

Page 61: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.
Page 62: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

Klinefelter’s Syndrome

Page 63: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.
Page 64: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.
Page 65: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

Karyotype- a picture or arrangement of metaphase chromosomes.

Can be taken from- amniocentesis -chorionic vili biopsy

Can be taken from any cells capturedin metaphase of mitosis.

Chromsomes are stained and photographed and then arranged by pairs according to size and banding patterns.

Page 66: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.
Page 67: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.
Page 68: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.
Page 69: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.
Page 70: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

Chromosome Karyotypes

Page 71: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

Mutations-any sudden change in genetic

material that can be passed on to the next generation

Page 72: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.
Page 73: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.
Page 74: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.
Page 75: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.
Page 76: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.
Page 77: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.
Page 78: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.
Page 79: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.
Page 80: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.
Page 81: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.
Page 82: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.
Page 83: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.
Page 84: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.
Page 85: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.
Page 86: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.
Page 87: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.
Page 88: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.
Page 89: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.
Page 90: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.
Page 91: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.
Page 92: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.
Page 93: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.
Page 94: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.
Page 95: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

Albinismrecessive disorderlack of

pigmentation

Page 96: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.
Page 97: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.
Page 98: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

Deletion

A fragment of a chromosome is missing

ex. Cri-du-chat syndrome or deletion of the short arm of the b group

chromosome results in a sever form of autism

Page 99: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.
Page 100: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.
Page 101: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

Translocation- exchange of genetic material from one location on a chromosome to another non-homologous chromosome.

Ex. D_G translocation causes a form of Down’sSyndrome

Page 102: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.
Page 103: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

Recombinant DNA

• Plasmid DNA

• Ligase enzyme Bacterial Cell

• Restriction Enzyme Bacterial cell wall

• Host cell Sticky ends

• Vector

• DNA fragment desired gene to be cloned

Page 104: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

Recombinant DNA

• Plasmid DNA

• Ligase enzyme Bacterial Cell

• Restriction Enzyme Bacterial cell wall

• Host cell Sticky ends

• Vector

• DNA fragment desired gene to be cloned

Page 105: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.
Page 106: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

Recombinant DNA

• Plasmid DNA

• Ligase enzyme Bacterial Cell

• Restriction Enzyme Bacterial cell wall

• Host cell Sticky ends

• Vector

• DNA fragment desired gene to be cloned

Page 107: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.
Page 108: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.
Page 109: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

Gene Therapy- insertion of genes to correct defects

Page 110: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.
Page 111: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

Mapping a chromosome

Linkage maps- measured in centimorgansa unit derived from analysis of cross-overstatistics. Measures the frequerncies ofcrossing over for genes on the samechromosomes.

Page 112: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

T

T

T TT

t t t t

t

T t

Page 113: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

pg102

• 1. I 2. A, 3. F, 4. E, 5. L, 6.J 7. H, 8. M, 9. C, 10. K

• 1.b, 2, d, 3. b, 4. c, 5.b, 6. c, 7.c, 8 c 9. b, 10. d, ( pg 104) 11. b, 12. d, 13. b, 14. d, 15. c, 16. d, 17 a, 18. c

Page 114: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

104

• None exonerated

• A or O

• A or O

• AB

• B. or O.

Page 115: Gene, chromosome,DNA DNA. Patterns of Inheritance Complete Dominance Incomplete Dominance Codominance Pleitrophy Epistasis Multiple Alleles Polygenic.

Pg 111

• 3. b, 4. d, 5. d, 6. b, 7. d, 8. a, 9. a, 10 a, 11. d, 12. b, 13. c, 14. d, 15. a, 16. c, 17. b, 18. c, 19. a