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Mendel and beyond Patterns of inheritance:
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Mendel and beyond Patterns of inheritance:. Contrasting characters in peas.

Jan 01, 2016

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Page 1: Mendel and beyond Patterns of inheritance:. Contrasting characters in peas.

Mendel and beyond

Patterns of inheritance:

Page 2: Mendel and beyond Patterns of inheritance:. Contrasting characters in peas.
Page 3: Mendel and beyond Patterns of inheritance:. Contrasting characters in peas.

Contrasting characters in peas

Page 4: Mendel and beyond Patterns of inheritance:. Contrasting characters in peas.

Experiment with garden peas I

Page 5: Mendel and beyond Patterns of inheritance:. Contrasting characters in peas.

In this case a true-breeding tall plant was

crossed with a true-breeding short plant.

All of the plants in the next generation were tall.

Page 6: Mendel and beyond Patterns of inheritance:. Contrasting characters in peas.

These are the results Mendel obtained when he crossed two heterozygotes.

Page 7: Mendel and beyond Patterns of inheritance:. Contrasting characters in peas.

‘Paint-pot’ theory of inheritance

Page 8: Mendel and beyond Patterns of inheritance:. Contrasting characters in peas.

Mendel’s finding was contrary to the prediction of the ‘Paint-pot’ theory of

inheritance

Page 9: Mendel and beyond Patterns of inheritance:. Contrasting characters in peas.

Mendel’s 1st law-law of segregation

Page 10: Mendel and beyond Patterns of inheritance:. Contrasting characters in peas.

Mendel’s law of segregation -explanation of monohybrid ratio

Page 11: Mendel and beyond Patterns of inheritance:. Contrasting characters in peas.

Mendel described patterns of inheritance in the 1860s, but it wasn’t until the early 1900s that inherited traits,

genes, were linked to cellular structures called chromosomes. The number of chromosomes varies among species, but all chromosomes contain genes

arranged linearly at specific locations, called loci.

Page 12: Mendel and beyond Patterns of inheritance:. Contrasting characters in peas.

This is how geneticists today represent the cross from the previous screen. The original plants are the P generation and their offspring are the F1 generation. The

T and t symbols represent dominant and recessive alleles of a single gene.

Page 13: Mendel and beyond Patterns of inheritance:. Contrasting characters in peas.

we breed the offspring to one another in the

cross Tt x Tt, and wish to predict the results

we need to follow the production of gametes

during meiosis.

These individuals make gametes with either T or t in equal

numbers.

Page 14: Mendel and beyond Patterns of inheritance:. Contrasting characters in peas.

The chance of gametes of different types encountering one another is represented on a Punnett square.

The genotypic ratio of homozygous dominant: heterozygous: homozygous recessive individuals is 1:2:1.

Page 15: Mendel and beyond Patterns of inheritance:. Contrasting characters in peas.

Many genetics problems will fall in the category of a monohybrid cross. They all can be approached using

the model above

Page 16: Mendel and beyond Patterns of inheritance:. Contrasting characters in peas.

Testcross. a heterozygote was crossed with a homozygous recessive individual.

A situation in which an individual of dominant phenotype, but of unknown genotype, is crossed with one or more recessive individuals. This can provide information on the unknown genotype.

Page 17: Mendel and beyond Patterns of inheritance:. Contrasting characters in peas.

Dihybrid cross

Page 18: Mendel and beyond Patterns of inheritance:. Contrasting characters in peas.

Dihybrid cross

Page 19: Mendel and beyond Patterns of inheritance:. Contrasting characters in peas.

Dihybrid cross

The inheritance of two contrasting characters were considered at the same time

Page 20: Mendel and beyond Patterns of inheritance:. Contrasting characters in peas.

Law of independent assortment

Page 21: Mendel and beyond Patterns of inheritance:. Contrasting characters in peas.

Mendel’s 2nd law

Page 22: Mendel and beyond Patterns of inheritance:. Contrasting characters in peas.

Mendel’s 2nd law

explained byobserving

movement of chromosomes at

meiosis

Page 23: Mendel and beyond Patterns of inheritance:. Contrasting characters in peas.

Cell division

Page 24: Mendel and beyond Patterns of inheritance:. Contrasting characters in peas.

The cell cycle

Page 25: Mendel and beyond Patterns of inheritance:. Contrasting characters in peas.

Interphase

Page 26: Mendel and beyond Patterns of inheritance:. Contrasting characters in peas.

Interphase

Page 27: Mendel and beyond Patterns of inheritance:. Contrasting characters in peas.

Mitosis – division of the nucleus

Page 28: Mendel and beyond Patterns of inheritance:. Contrasting characters in peas.

Prophase

metaphase

anaphase

telophase

Division of the nucleus

Page 29: Mendel and beyond Patterns of inheritance:. Contrasting characters in peas.

Division of the cytoplasm

Page 30: Mendel and beyond Patterns of inheritance:. Contrasting characters in peas.

Produce identical daughter cells

Page 31: Mendel and beyond Patterns of inheritance:. Contrasting characters in peas.

Mitosis and cell cycle

Page 32: Mendel and beyond Patterns of inheritance:. Contrasting characters in peas.

Meiosis

• Reduction division

• Generate variability in gametes

Page 33: Mendel and beyond Patterns of inheritance:. Contrasting characters in peas.

Meiosis-Interphase

Page 34: Mendel and beyond Patterns of inheritance:. Contrasting characters in peas.

Meiosis-prophase I

Page 35: Mendel and beyond Patterns of inheritance:. Contrasting characters in peas.

Meiosis-metaphase I

Page 36: Mendel and beyond Patterns of inheritance:. Contrasting characters in peas.

Meiosis-anaphase I

Page 37: Mendel and beyond Patterns of inheritance:. Contrasting characters in peas.

Meiosis-telophase I

Page 38: Mendel and beyond Patterns of inheritance:. Contrasting characters in peas.

Meiosis I -animated

Page 39: Mendel and beyond Patterns of inheritance:. Contrasting characters in peas.

Meiosis II

anaphase II

metaphase II

prophase II

telophase II

Page 40: Mendel and beyond Patterns of inheritance:. Contrasting characters in peas.

Meiosis II -animated

Page 41: Mendel and beyond Patterns of inheritance:. Contrasting characters in peas.

Meiosis-overall

Page 42: Mendel and beyond Patterns of inheritance:. Contrasting characters in peas.

Independent assortment

Page 43: Mendel and beyond Patterns of inheritance:. Contrasting characters in peas.

Crossing over

Page 44: Mendel and beyond Patterns of inheritance:. Contrasting characters in peas.

Anaphase I and II

note new gene combinations as a result of crossing

over

Page 45: Mendel and beyond Patterns of inheritance:. Contrasting characters in peas.

Comparing Mitosis

and Meiosis

Page 46: Mendel and beyond Patterns of inheritance:. Contrasting characters in peas.

Comparing Mitosis

and Meiosis

Page 47: Mendel and beyond Patterns of inheritance:. Contrasting characters in peas.

Incomplete dominance

In some cases, alleles may not interact in a dominant/recessive pattern. Heterozygotes have an intermediate phenotype or express both alleles. The genotypic ratio will match the phenotypic ratio. Snapdragons demonstrate incomplete dominance.

Page 48: Mendel and beyond Patterns of inheritance:. Contrasting characters in peas.

Incomplete dominance II

Page 49: Mendel and beyond Patterns of inheritance:. Contrasting characters in peas.

Multiple allele

Page 50: Mendel and beyond Patterns of inheritance:. Contrasting characters in peas.

Linkage and crossing-over

Page 51: Mendel and beyond Patterns of inheritance:. Contrasting characters in peas.

Recombinant frequency

Page 52: Mendel and beyond Patterns of inheritance:. Contrasting characters in peas.

Skin colour_a pair of twin sisters

Page 53: Mendel and beyond Patterns of inheritance:. Contrasting characters in peas.

Continuous or discontinuous

Page 54: Mendel and beyond Patterns of inheritance:. Contrasting characters in peas.

Polygenic effects on genetic variation

Page 55: Mendel and beyond Patterns of inheritance:. Contrasting characters in peas.

Polygenic inheritance_skin colour

Page 56: Mendel and beyond Patterns of inheritance:. Contrasting characters in peas.

Skin colour is a

continuous variation

because…

Page 57: Mendel and beyond Patterns of inheritance:. Contrasting characters in peas.

How would U explain the very different skin colour of the twin sisters?

Page 58: Mendel and beyond Patterns of inheritance:. Contrasting characters in peas.

X-inactivation

Page 59: Mendel and beyond Patterns of inheritance:. Contrasting characters in peas.

X-inactivation