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MENDEL’S LAWS copyright cmassengale 1
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MENDEL’S LAWS copyright cmassengale 1. RESULTS OF MONOHYBRID CROSSES Inheritable factors or genes are responsible for all heritable characteristics.

Jan 20, 2016

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Page 1: MENDEL’S LAWS copyright cmassengale 1. RESULTS OF MONOHYBRID CROSSES  Inheritable factors or genes are responsible for all heritable characteristics.

MENDEL’S LAWS

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Page 2: MENDEL’S LAWS copyright cmassengale 1. RESULTS OF MONOHYBRID CROSSES  Inheritable factors or genes are responsible for all heritable characteristics.

RESULTS OF MONOHYBRID CROSSES

Inheritable factors or genes are responsible for all heritable characteristics

Phenotype is based on Genotype Each trait is based on two genes,

one from the mother and the other from the father

True-breeding individuals are homozygous ( both alleles) are the same

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Page 3: MENDEL’S LAWS copyright cmassengale 1. RESULTS OF MONOHYBRID CROSSES  Inheritable factors or genes are responsible for all heritable characteristics.

LAW OF DOMINANCE

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In a cross of parents that are pure for contrasting traits, only one form of the trait will appear in the next generation.

All the offspring will be heterozygous and express only the dominant trait.

RR x rr yields all Rr (round seeds)

Page 4: MENDEL’S LAWS copyright cmassengale 1. RESULTS OF MONOHYBRID CROSSES  Inheritable factors or genes are responsible for all heritable characteristics.

LAW OF DOMINANCEcopyright cmassengale

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Page 5: MENDEL’S LAWS copyright cmassengale 1. RESULTS OF MONOHYBRID CROSSES  Inheritable factors or genes are responsible for all heritable characteristics.

LAW OF SEGREGATION

During the formation of gametes (eggs or sperm), the two alleles responsible for a trait separate from each other.

Alleles for a trait are then "recombined" at fertilization, producing the genotype for the traits of the offspring.

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Page 6: MENDEL’S LAWS copyright cmassengale 1. RESULTS OF MONOHYBRID CROSSES  Inheritable factors or genes are responsible for all heritable characteristics.

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APPLYING THE LAW OF SEGREGATION

Page 7: MENDEL’S LAWS copyright cmassengale 1. RESULTS OF MONOHYBRID CROSSES  Inheritable factors or genes are responsible for all heritable characteristics.

LAW OF INDEPENDENT ASSORTMENT

Alleles for different traits are distributed to sex cells (& offspring) independently of one another.

This law can be illustrated using dihybrid crosses.

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Page 8: MENDEL’S LAWS copyright cmassengale 1. RESULTS OF MONOHYBRID CROSSES  Inheritable factors or genes are responsible for all heritable characteristics.

DIHYBRID CROSS

A breeding experiment that tracks the inheritance of two traits.

Mendel’s “Law of Independent Assortment”

a. Each pair of alleles segregates independently during gamete formation

b. Formula: 2n (n = # of heterozygotes)

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Page 9: MENDEL’S LAWS copyright cmassengale 1. RESULTS OF MONOHYBRID CROSSES  Inheritable factors or genes are responsible for all heritable characteristics.

QUESTION:HOW MANY GAMETES WILL BE PRODUCED FOR THE FOLLOWING ALLELE ARRANGEMENTS?

Remember: 2n (n = # of heterozygotes)

1. RrYy

2. AaBbCCDd

3. MmNnOoPPQQRrssTtQq

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Page 10: MENDEL’S LAWS copyright cmassengale 1. RESULTS OF MONOHYBRID CROSSES  Inheritable factors or genes are responsible for all heritable characteristics.

ANSWER:

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1. RrYy: 2n = 22 = 4 gametesRY Ry rY ry

2. AaBbCCDd: 2n = 23 = 8 gametesABCD ABCd AbCD AbCdaBCD aBCd abCD abCD

3. MmNnOoPPQQRrssTtQq: 2n = 26 = 64 gametes

Page 11: MENDEL’S LAWS copyright cmassengale 1. RESULTS OF MONOHYBRID CROSSES  Inheritable factors or genes are responsible for all heritable characteristics.

DIHYBRID CROSS

Traits: Seed shape & Seed color Alleles: R round

r wrinkled Y yellow y green

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RrYy x RrYy

RY Ry rY ry RY Ry rY ry

All possible gamete combinations

Page 12: MENDEL’S LAWS copyright cmassengale 1. RESULTS OF MONOHYBRID CROSSES  Inheritable factors or genes are responsible for all heritable characteristics.

DIHYBRID CROSS

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RY Ry rY ry

RY

Ry

rY

ry

Page 13: MENDEL’S LAWS copyright cmassengale 1. RESULTS OF MONOHYBRID CROSSES  Inheritable factors or genes are responsible for all heritable characteristics.

DIHYBRID CROSS

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RRYY

RRYy

RrYY

RrYy

RRYy

RRyy

RrYy

Rryy

RrYY

RrYy

rrYY

rrYy

RrYy

Rryy

rrYy

rryy

Round/Yellow: 9

Round/green: 3

wrinkled/Yellow: 3

wrinkled/green: 1

9:3:3:1 phenotypic ratio

RY Ry rY ry

RY

Ry

rY

ry

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DIHYBRID CROSScopyright cmassengale

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Round/Yellow: 9Round/green: 3wrinkled/Yellow: 3wrinkled/green: 1

9:3:3:1

Page 15: MENDEL’S LAWS copyright cmassengale 1. RESULTS OF MONOHYBRID CROSSES  Inheritable factors or genes are responsible for all heritable characteristics.

TEST CROSS

A mating between an individual of unknown genotype and a homozygous recessive individual.

Example: bbC__ x bbcc

BB = brown eyes Bb = brown eyes bb = blue eyes

CC = curly hair Cc = curly hair cc = straight hair

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bC b___

bc

Page 16: MENDEL’S LAWS copyright cmassengale 1. RESULTS OF MONOHYBRID CROSSES  Inheritable factors or genes are responsible for all heritable characteristics.

TEST CROSS

Possible results:

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bC b___

bc bbCc bbCc

C bC b___

bc bbCc bbccor

c

Page 17: MENDEL’S LAWS copyright cmassengale 1. RESULTS OF MONOHYBRID CROSSES  Inheritable factors or genes are responsible for all heritable characteristics.

SUMMARY OF MENDEL’S LAWScopyright cmassengale

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LAWPARENT CROSS

OFFSPRING

DOMINANCE TT x tt tall x short

100% Tt tall

SEGREGATIONTt x Tt

tall x tall75% tall

25% short

INDEPENDENT ASSORTMENT

RrGg x RrGg round & green x round & green

9/16 round seeds & green pods

3/16 round seeds & yellow pods

3/16 wrinkled seeds & green pods

1/16 wrinkled seeds & yellow pods

Page 18: MENDEL’S LAWS copyright cmassengale 1. RESULTS OF MONOHYBRID CROSSES  Inheritable factors or genes are responsible for all heritable characteristics.

Mendel deduced the underlying principles of genetics from these patterns

1. Segregation2. Dominance3. Independent assortment