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Mendel and the Gene Idea

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Page 1: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Mendel and the Gene Idea

Page 2: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Inheritance

The passing of traits from parents to offspring.

Humans have known about inheritance for thousands of years.

Page 3: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Genetics

The scientific study of the inheritance.

Genetics is a relatively “new” science (about 150 years).

Page 4: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Genetic Theories1. Blending Theory -

traits were like paints and mixed evenly from both parents.

2. Incubation Theory -

only one parent controlled the traits of the children.Ex: Spermists and Ovists

Page 5: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

3. Particulate Model -

parents pass on traits as discrete units that retain their identities in the offspring.

Page 6: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Gregor Mendel Father of Modern Genetics.

Page 7: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Mendel’s paper published in 1866, but was not recognized by Science until the early 1900’s.

Page 8: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Reasons for Mendel's Success

Used an experimental approach.

Applied mathematics to the study of natural phenomena.

Kept good records.

Page 9: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Mendel was a pea picker.

He used peas as his study organism.

Page 10: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Why Use Peas?

Short life span. Bisexual. Many traits known. Cross- and self-pollinating. (You can eat the failures).

Page 11: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Cross-pollination

Two parents. Results in hybrid offspring

where the offspring may be different than the parents.

Page 12: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years
Page 13: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Self-pollination

One flower as both parents. Natural event in peas. Results in pure-bred

offspring where the offspring are identical to the parents.

Page 14: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Mendel's Work

Used seven characters, each with two expressions or traits.

Example: Character - height

Traits - tall or short.

Page 15: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Monohybrid or Mendelian Crosses

Crosses that work with a single character at a time.

Example - Tall X short

Page 16: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

P Generation

The Parental generation or the first two individuals used in a cross.

Example - Tall X short Mendel used reciprocal

crosses, where the parents alternated for the trait.

Page 17: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Offspring

F1 - first filial generation. F2 - second filial generation,

bred by crossing two F1 plants together or allowing a F1 to self-pollinate.

Page 18: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years
Page 19: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years
Page 20: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years
Page 21: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Another Sample Cross

P1 Tall X short (TT x tt)

F1 all Tall (Tt)

F2 3 tall to 1 short

(1 TT: 2 Tt: 1 tt)

Page 22: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Results - Summary In all crosses, the F1

generation showed only one of the traits regardless of which was male or female.

The other trait reappeared in the F2 at ~25% (3:1 ratio).

Page 23: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Mendel's Hypothesis

1. Genes can have alternate versions called alleles.

2. Each offspring inherits two alleles, one from each parent.

Page 24: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Mendel's Hypothesis3. If the two alleles differ, the

dominant allele is expressed. The recessive allele remains hidden unless the dominant allele is absent.

Comment - do not use the terms “strongest” to describe the dominant allele.

Page 25: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Mendel's Hypothesis

4. The two alleles for each trait separate during gamete formation. This now called: Mendel's Law of Segregation

Page 26: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Law of Segregation

Page 27: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Mendel’s Experiments

Showed that the Particulate Model best fit the results.

Page 28: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Vocabulary

Phenotype - the physical appearance of the organism.

Genotype - the genetic makeup of the organism, usually shown in a code. T = tall t = short

Page 29: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years
Page 30: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Helpful Vocabulary

Homozygous - When the two alleles are the same (TT/tt).

Heterozygous- When the two alleles are different (Tt).

Page 31: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

6 Mendelian Crosses are Possible

Cross Genotype PhenotypeTT X tt all Tt all Dom

Tt X Tt 1TT:2Tt:1tt 3 Dom: 1 Res

TT X TT all TT all Dom

tt X tt all tt all Res

TT X Tt 1TT:1Tt all Dom

Tt X tt 1Tt:1tt 1 Dom: 1 Res

Page 32: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Test Cross

Cross of a suspected heterozygote with a homozygous recessive.

Ex: T_ X tt

If TT - all dominant

If Tt - 1 Dominant: 1 Recessive

Page 33: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years
Page 34: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Dihybrid Cross

Cross with two genetic traits. Need 4 letters to code for the

cross. Ex: TtRr

Each Gamete - Must get 1 letter for each trait. Ex. TR, Tr, etc.

Page 35: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Number of Kinds of Gametes

Critical to calculating the results of higher level crosses.

Look for the number of heterozygous traits.

Page 36: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Equation

The formula 2n can be used, where “n” = the number of heterozygous traits.

Ex: TtRr, n=2

22 or 4 different kinds of gametes are possible.

TR, tR, Tr, tr

Page 37: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Dihybrid Cross

TtRr X TtRr

Each parent can produce 4 types of gametes.

TR, Tr, tR, tr

Cross is a 4 X 4 with 16 possible offspring.

Page 38: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Results

9 Tall, Red flowered 3 Tall, white flowered 3 short, Red flowered 1 short, white flowered

Or: 9:3:3:1

Page 39: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Law of Independent Assortment

The inheritance of 1st genetic trait is NOT dependent on the inheritance of the 2nd trait.

Inheritance of height is independent of the inheritance of flower color.

Page 40: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years
Page 41: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Comment

Ratio of Tall to short is 3:1 Ratio of Red to white is 3:1 The cross is really a product

of the ratio of each trait multiplied together. (3:1) X (3:1)

Page 42: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Probability

Genetics is a specific application of the rules of probability.

Probability - the chance that an event will occur out of the total number of possible events.

Page 43: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years
Page 44: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Genetic Ratios

The monohybrid “ratios” are actually the “probabilities” of the results of random fertilization.

Ex: 3:175% chance of the dominant25% chance of the recessive

Page 45: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Rule of Multiplication

The probability that two alleles will come together at fertilization, is equal to the product of their separate probabilities.

Page 46: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Example: TtRr X TtRr

The probability of getting a tall offspring is ¾.

The probability of getting a red offspring is ¾.

The probability of getting a tall red offspring is ¾ x ¾ = 9/16

Page 47: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Comment

Use the Product Rule to calculate the results of complex crosses rather than work out the Punnett Squares.

Ex: TtrrGG X TtRrgg

Page 48: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Solution

“T’s” = Tt X Tt = 3:1

“R’s” = rr X Rr = 1:1

“G’s” = GG x gg = 1:0

Product is:

(3:1) X (1:1) X (1:0 ) = 3:3:1:1

Page 49: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Tips for Dihybrid Problems

Identify all of the alleles that can be identified from the phenotypes of the parents or kids.

Work from the monohybrid ratios to solve for the missing alleles.

Page 50: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Variations on Mendel

1. Incomplete Dominance

2. Codominance

3. Multiple Alleles

4. Epistasis

5. Polygenic Inheritance

Page 51: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Incomplete Dominance

When the F1 hybrids show a phenotype somewhere between the phenotypes of the two parents.

Ex. Red X White snapdragons F1 = all pink F2 = 1 red: 2 pink: 1 white

Page 52: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years
Page 53: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Result No hidden Recessive. 3 phenotypes and

3 genotypes (Hint! – often a “dose” effect) Red = CR CR

Pink = CRCW

White = CWCW

Page 54: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Another example

Page 55: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Codominance

Both alleles are expressed equally in the phenotype.

Ex. MN blood group MM MN NN

Page 56: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Result

No hidden Recessive. 3 phenotypes and

3 genotypes (but not a “dose” effect)

Page 57: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Multiple Alleles

When there are more than 2 alleles for a trait.

Ex. ABO blood group IA - A type antigen IB - B type antigen i - no antigen

Page 58: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Result

Multiple genotypes and phenotypes.

Very common event in many traits.

Page 59: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Alleles and Blood Types

Type Genotypes

A IA IA or IAi B IB IB or IBi AB IAIB

O ii

Page 60: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years
Page 61: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years
Page 62: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Comment

Rh blood factor is a separate factor from the ABO blood group.

Rh+ = dominant Rh- = recessive A+ blood = dihybrid trait

Page 63: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Epistasis

When 1 gene locus alters the expression of a second locus.

Ex: 1st gene: C = color, c = albino 2nd gene: B = Brown, b = black

Page 64: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Gerbils

Page 65: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

In Gerbils

CcBb X CcBb

Brown X Brown

F1 = 9 brown (C_B_)

3 black (C_bb)

4 albino (cc__)

Page 66: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Result

Ratios often altered from the expected.

One trait may act as a recessive because it is “hidden” by the second trait.

Page 67: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Epistasis in Mice

Page 68: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Problem

Wife is type A Husband is type AB Child is type O

Question - Is this possible?

Comment - Wife’s boss is type O

Page 69: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Bombay Effect

Epistatic Gene on ABO group.

Alters the expected ABO outcome.

H = dominant, normal ABO h = recessive, no A,B,

reads as type O blood.

Page 70: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Genotypes

Wife: type A (IA IA , Hh) Husband: type AB (IAIB, Hh) Child: type O (IA IA , hh)

Therefore, the child is the offspring of the wife and her husband (and not the boss).

Page 71: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Bombay - Detection

When ABO blood type inheritance patterns are altered from expected.

Page 72: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

AP Biology

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Page 73: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Homework Readings – Chapters 14, 47 Lab – changed to Chi Square

and other genetics. Chapter 47 – Wed. 12/1 Chapter 14 – Fri. 12/3

Page 74: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

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Page 75: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Polygenic Inheritance

Factors that are expressed as continuous variation.

Lack clear boundaries between the phenotype classes.

Ex: skin color, height

Page 76: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Genetic Basis

Several genes govern the inheritance of the trait.

Ex: Skin color is likely controlled by at least 4 genes. Each dominant gives a darker skin.

Page 77: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years
Page 78: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Result Mendelian ratios fail. Traits tend to "run" in

families. Offspring often intermediate

between the parental types. Trait shows a “bell-curve” or

continuous variation.

Page 79: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Genetic Studies in Humans

Often done by Pedigree charts.

Why? Can’t do controlled breeding

studies in humans. Small number of offspring. Long life span.

Page 80: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Pedigree Chart Symbols

Male

Female

Person with trait

Page 81: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Sample Pedigree

Page 82: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Dominant Trait Recessive Trait

Page 83: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Human Recessive Disorders

Several thousand known: Albinism Sickle Cell Anemia Tay-Sachs Disease Cystic Fibrosis PKU Galactosemia

Page 84: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Sickle-cell Disease Most common inherited disease

among African-Americans. Single amino acid substitution

results in malformed hemoglobin.

Reduced O2 carrying capacity. Codominant inheritance.

Page 85: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years
Page 86: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Tay-Sachs Eastern European Jews. Brain cells unable to metabolize

type of lipid, accumulation of causes brain damage.

Death in infancy or early childhood.

Page 87: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Cystic Fibrosis

Most common lethal genetic disease in the U.S.

Most frequent in Caucasian populations (1/20 a carrier).

Produces defective chloride

channels in membranes.

Page 88: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Recessive Pattern

Usually rare. Skips generations. Occurrence increases with

consaguineous matings. Often an enzyme defect. Affects males and females

equally.

Page 89: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Human Dominant Disorders

Less common then recessives. Affects males and females

equally. Ex:

Huntington’s disease Achondroplasia Familial Hypercholesterolemia

Page 90: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Inheritance Pattern

Each affected individual had one affected parent.

Doesn’t skip generations. Homozygous cases show

worse phenotype symptoms. May have post-maturity onset

of symptoms.

Page 91: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Genetic Screening

Risk assessment for an individual inheriting a trait.

Uses probability to calculate the risk.

Page 92: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

General FormalR = F X M X D

R = riskF = probability that the female

carries the gene.M = probability that the male

carries the gene.D = Disease risk under best

conditions.

Page 93: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Example

Wife has an albino parent. Husband has no albinism in

his pedigree. Risk for an albino child?

Page 94: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Risk Calculation Wife = probability is 1.0 that

she has the allele. Husband = with no family

record, probability is near 0. Disease = this is a recessive

trait, so risk is Aa X Aa = .25 R = 1 X 0 X .25 R = 0

Page 95: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Risk Calculation

Assume husband is a carrier, then the risk is:

R = 1 X 1 X .25

R = .25

There is a .25 chance that every child will be albino.

Page 96: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Common Mistake

If risk is .25, then as long as we don’t have 4 kids, we won’t get any with the trait.

Risk is .25 for each child. It is not dependent on what happens to other children.

Page 97: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Carrier Recognition

Fetal Testing Amniocentesis Chorionic villi sampling

Newborn Screening

Page 98: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Fetal Testing

Biochemical Tests Chromosome Analysis

Page 99: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Amniocentesis Administered between 11 - 14

weeks. Extract amnionic fluid = cells

and fluid. Biochemical tests and

karyotype. Requires culture time for

cells.

Page 100: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years
Page 101: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Chorionic Villi Sampling

Administered between 8 - 10 weeks.

Extract tissue from chorion (placenta).

Slightly greater risk but no culture time required.

Page 102: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years
Page 103: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Newborn Screening

Blood tests for recessive conditions that can have the phenotypes treated to avoid damage. Genotypes are NOT changed.

Ex. PKU

Page 104: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Newborn Screening

Required by law in all states. Tests 1- 6 conditions. Required of “home” births

too.

Page 105: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Multifactorial Diseases

Where Genetic and Environment Factors interact to cause the Disease.

Page 106: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Ex. Heart Disease

Genetic Diet Exercise Bacterial Infection

Page 107: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Summary

Know the Mendelian crosses and their patterns.

Be able to work simple genetic problems (practice).

Watch genetic vocabulary. Be able to read pedigree

charts.

Page 108: Mendel and the Gene Idea. Inheritance  The passing of traits from parents to offspring.  Humans have known about inheritance for thousands of years

Summary

Be able to recognize and work with some of the “common” human trait examples.