Will I need therapy after this class?

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Will I need therapy after this class? Lecture 14 - Genetics

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Will I need therapy after this class?. Lecture 14 - Genetics. Mendel Founder of modern genetics called classical genetics or Mendelian genetics. - PowerPoint PPT Presentation

Transcript of Will I need therapy after this class?

Page 1: Will I need therapy after this class?

Will I need therapy after this class?

Lecture 14 - Genetics

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http://images.google.com/imgres?imgurl=eesc.orst.edu/agcomwebfile/magazine/99Spring/Images/mendel!.gif.gif&imgrefurl=http://eesc.orst.edu/agcomwebfile/magazine/99Spring/OAPSpring99text/OAPSPRG9906.html&h=172&w=198&prev=/images%3Fq%3DMendel%26start%3D40%26svnum%3D10%26hl%3Den%26lr%3D%26ie%3DUTF-8%26oe%3DUTF-8%26sa%3DN

Mendel Founder of modern genetics called

classical genetics or Mendelian genetics

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http://images.google.com/imgres?imgurl=nitro.biosci.arizona.edu/courses/EEB320/Lecture03/pics/medgard.jpeg&imgrefurl=http://nitro.biosci.arizona.edu/courses/EEB320/Lecture03/Lecture03.html&h=284&w=384&prev=/images%3Fq%3DMendel%2527%2Bgarden%26start%3D20%26svnum%3D10%26hl%3Den%26lr%3D%26ie%3DUTF-8%26oe%3DUTF-8%26sa%3DN

Mendel’s garden in Austria

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Mendel (Genetics) vs (?) Darwin (Evolution)

Worked in mid 1800s

Saw work of the other as contradictory to their own work

Mendel’s work now explains Darwin’s work

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Mendel studied inheritance of garden pea anatomy and described meiosis without

knowing anything about meiosis

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........such as shape, color and texture of

pea seeds.

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http://images.google.com/imgres?imgurl=www.amphilsoc.org/library/images/genetics/morgan2.jpg&imgrefurl=http://www.amphilsoc.org/library/guides/genetics.htm&h=329&w=300&prev=/images%3Fq%3Dmorgan%2Bgenetics%26svnum%3D10%26hl%3Den%26lr%3D%26ie%3DUTF-8%26oe%3DUTF-8

Morgan advanced Mendel’s ideas using fruit flies.

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Next………………………………

Some genetics terms and concepts

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Gene = that section of DNA responsible for trait (seed color, eye color, skin color, etc.)

Chromatin

Gene

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GenesGenes make protein products

Alleles are alternate forms of gene for same trait

Hemoglobin normal gene = H

Hemoglobin sickle cell gene = h (allele)

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GenotypeGenotype is combination of genes responsible for

traits or products.

Three possibilities for genes H and h:

HH and hh and Hh

HH and hh = Homozygous Genotypes

Homo = same zygous = union;

Hh = Heterozygous Genotype

Hetero = other zygous = union

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H

h

Normal zygote

zygote with sickel cell

Normal zygote

Heterozygous genotype

spermEgg

Hh

h h

hh

H

H

HH Homozygous genotypes

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Phenotype

Physical, chemical, physiological, behavioral appearance of organism

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Review - Gene, Genotype & Phenotype

GENOTYPES = HH or

Hh

GENEOTYPE = hh

PHENOTYPE = normal

hemoglobin

PHENOTYPE = abnormal hemoglobin

Phenotype = normal red blood cell

Phenotype = sickled red blood cell

H = normal hemoglobin GENE

h = abnormal hemoglobin GENE

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Types of genetic interactions following amphimixis:

Dominance / recessiveness

Incomplete Dominance

Codominance

Pleiotropy

Atavism

Multiple Alleles at the same loci

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Dominant / Recessive Alleles

Dominant allele - homozygous or heterozygous genotype = same phenotype

Recessive allele – phenotype only shows up in homozygous genotype

Alleles Genotypes Phenotypes

T (tall plant) TT Tall Plant

t (short plant) Tt Tall Plant

tt Short Plant

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G = allele for green seed pods is dominant g = allele for yellow pods is recessive

gg GG or Gg

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Genotypes ff FF or Ff

Phenotypes attached Free

Attached and Free earlobes

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Several types of interactions:

Dominance / recessiveness

Incomplete Dominance

Codominance

Pleiotropy

Atavism

Multiple Alleles at the same loci

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Incomplete Dominance

neither allele is completely expressed when the other allele is present.

Genes Genotypes Phenotypes

R (red flower) RR Red

W (white flower) WW White

RW Pink

WW RW RR

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Several types of interactions:

Dominance / recessiveness

Incomplete Dominance

Codominance

Pleiotropy

Atavism

Multiple Alleles at the same loci

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Codominance

equal expression of two alleles that occur at the same loci on homologous chromosomes

Genes Genotypes Phenotypes

IA IAIA Blood type A IB IBIB Blood type B i ii Blood type O

IAIB Blood type AB IAi Blood type A IBi Blood type B

IA and IB are codominant to each other, but dominant to i

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Type A blood is IAIA or IAi

Type B blood is IBIB or IBi

Type AB blood is IAIB

Type O blood is ii

Type “A” protein in membrane

Type “B” protein in membrane

Type “A” and type “B” proteins

in membrane

Neiter Type “A” or type “B” proteins in membrane

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Several types of interactions:

Dominance / recessiveness

Incomplete Dominance

Codominance

Pleiotropy

Atavism

Multiple Alleles at the same loci

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Pleiotropy = single gene has have multiple effects

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Bad hemoglobin protein = bad cells

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Bad cells = bad physiology

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Bad physiology = organ failures and “bad” life

Key word is ……BAD

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Several types of interactions:

Dominance / recessiveness

Incomplete Dominance

Codominance

Pleiotropy

Atavism

Multiple Alleles at the same loci

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AtavismTraits similar to ancestral

evolutionary traits.

Examples include:

human tail, mammary line, human gill slits

May be due to:

ancient genes

mutations resulting in traits that resemble ancient traits

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Normal allele is N

atavistic allele is W and rare

NN = normal

NW = normal

WW = atavism

Human gene pool

N

N

N

N

N

N

N

N

N

N

N

N

W

W

W

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Human Tail is an example of Atavism or a form similar to an ancestral form

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Mammary line - atavistic trait resulting in

multiple mammary glands in humans; as is found in other

more primitive mammals

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There have been some documented cases of humans born with gill slits in neck without gills – very controversial little agreement on origin.

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Several types of interactions:

Dominance / recessiveness

Incomplete Dominance

Codominance

Lethal Alleles

Pleiotropy

Multiple Alleles at the same loci

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S Si Sp Sw

S – solid black

Si – Black with some white

Sp – white with some black

Sw = all white

Alleles

Genotypes

and

Phenotype

Order of dominance

Black and white coat color in dogs.

Multiple Alleles at the same loci.

3 or more alleles at same loci within a population.

least

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S S

or

S Si

or

S Sp

or

S Sw

phenotype

genotypes

S – solid black

Si – Black with some white

Sp – white with some black

Sw = all white

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Si Si

or

Si Sp

or

Si Sw

S – solid black

Si – Black with some white

Sp – white with some black

Sw = all white

Phenotype = Black with some white

genotypes

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Sp Sp

or

Sp Sw

S – solid black

Si – Black with some white

Sp – white with some black

Sw = all white

genotypes

Phenotype = White with some black

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Sw Sw

S – solid black

Si – Black with some white

Sp – white with some black

Sw = all white