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Human Human Genetics Genetics

Human Genetics. A Pedigree of a Recessive Human Trait Note that the trait can appear in offspring of parents without the trait. Heterozygotes who do not

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Page 1: Human Genetics. A Pedigree of a Recessive Human Trait Note that the trait can appear in offspring of parents without the trait. Heterozygotes who do not

Human Human GeneticsGenetics

Page 2: Human Genetics. A Pedigree of a Recessive Human Trait Note that the trait can appear in offspring of parents without the trait. Heterozygotes who do not

A Pedigree of a Recessive Human Trait

Note that the trait can appear in offspring of parents without the trait.

Heterozygotes who do not show the trait are termed carriers.

Page 3: Human Genetics. A Pedigree of a Recessive Human Trait Note that the trait can appear in offspring of parents without the trait. Heterozygotes who do not

A Pedigree of a Dominant Human Trait

Note that the trait appears in every generation and ½ the offspring of an affected heterozygote are expected to show the trait.

Page 4: Human Genetics. A Pedigree of a Recessive Human Trait Note that the trait can appear in offspring of parents without the trait. Heterozygotes who do not
Page 5: Human Genetics. A Pedigree of a Recessive Human Trait Note that the trait can appear in offspring of parents without the trait. Heterozygotes who do not
Page 6: Human Genetics. A Pedigree of a Recessive Human Trait Note that the trait can appear in offspring of parents without the trait. Heterozygotes who do not
Page 7: Human Genetics. A Pedigree of a Recessive Human Trait Note that the trait can appear in offspring of parents without the trait. Heterozygotes who do not
Page 8: Human Genetics. A Pedigree of a Recessive Human Trait Note that the trait can appear in offspring of parents without the trait. Heterozygotes who do not
Page 9: Human Genetics. A Pedigree of a Recessive Human Trait Note that the trait can appear in offspring of parents without the trait. Heterozygotes who do not
Page 10: Human Genetics. A Pedigree of a Recessive Human Trait Note that the trait can appear in offspring of parents without the trait. Heterozygotes who do not

X-linked Inheritance – When Men and Woman Play by Different Rules

Behind the 8-ball? Colorblindness is an X-linked recessive trait.

Page 11: Human Genetics. A Pedigree of a Recessive Human Trait Note that the trait can appear in offspring of parents without the trait. Heterozygotes who do not

X-linked Inheritance

There are many X-linked recessive traits.

Page 12: Human Genetics. A Pedigree of a Recessive Human Trait Note that the trait can appear in offspring of parents without the trait. Heterozygotes who do not

Pedigree Analysis is a Key Tool in Human Genetics

Analyzing a pedigree is like puzzle-building – you try things (assigning potential genotypes) until the pieces fit (you’re as certain as you can be about genotypes and modes of transmission (autosomal vs. X-linked; dominant vs. recessive).

Page 13: Human Genetics. A Pedigree of a Recessive Human Trait Note that the trait can appear in offspring of parents without the trait. Heterozygotes who do not
Page 14: Human Genetics. A Pedigree of a Recessive Human Trait Note that the trait can appear in offspring of parents without the trait. Heterozygotes who do not
Page 15: Human Genetics. A Pedigree of a Recessive Human Trait Note that the trait can appear in offspring of parents without the trait. Heterozygotes who do not
Page 16: Human Genetics. A Pedigree of a Recessive Human Trait Note that the trait can appear in offspring of parents without the trait. Heterozygotes who do not
Page 17: Human Genetics. A Pedigree of a Recessive Human Trait Note that the trait can appear in offspring of parents without the trait. Heterozygotes who do not

Lab Karyotyping

http://www.ncbi.nlm.nih.gov/books/bv.fcgi?rid=gnd

http://www.biology.arizona.edu/human_bio/activities/karyotyping/karyotyping.html

http://explorelearning.com

Page 18: Human Genetics. A Pedigree of a Recessive Human Trait Note that the trait can appear in offspring of parents without the trait. Heterozygotes who do not
Page 19: Human Genetics. A Pedigree of a Recessive Human Trait Note that the trait can appear in offspring of parents without the trait. Heterozygotes who do not
Page 20: Human Genetics. A Pedigree of a Recessive Human Trait Note that the trait can appear in offspring of parents without the trait. Heterozygotes who do not

Searching for Chromosomal Defects - Amniocentesis and Chorionic Villus Sampling

Many new techniques for learning about individual genes rather than whole chromosomes are available or under development.

Page 21: Human Genetics. A Pedigree of a Recessive Human Trait Note that the trait can appear in offspring of parents without the trait. Heterozygotes who do not

Searching for Chromosome and Gene Defects – Pre-Implantation Genetic Diagnosis (PGD)

Removing a cell for diagnosis from a human embryo.

The diagnosis: trisomy 21 (Down syndrome).

Page 22: Human Genetics. A Pedigree of a Recessive Human Trait Note that the trait can appear in offspring of parents without the trait. Heterozygotes who do not
Page 23: Human Genetics. A Pedigree of a Recessive Human Trait Note that the trait can appear in offspring of parents without the trait. Heterozygotes who do not

Chromosomes and Inheritance

Since genes are carried on chromosomes, knowledge of chromosome number and structure has far-reaching implications for basic genetics, human health, and evolution.

A normal human male karyotype.

Page 24: Human Genetics. A Pedigree of a Recessive Human Trait Note that the trait can appear in offspring of parents without the trait. Heterozygotes who do not
Page 25: Human Genetics. A Pedigree of a Recessive Human Trait Note that the trait can appear in offspring of parents without the trait. Heterozygotes who do not

Chromosome Non-Disjunction in Meiosis Causes Aneuploidy

Page 26: Human Genetics. A Pedigree of a Recessive Human Trait Note that the trait can appear in offspring of parents without the trait. Heterozygotes who do not
Page 27: Human Genetics. A Pedigree of a Recessive Human Trait Note that the trait can appear in offspring of parents without the trait. Heterozygotes who do not

Changes in Chromosome Number and Structure

Changes in chromosome number and structure are important for health and evolution.

Down syndrome is caused by a change in chromosome number.

Page 28: Human Genetics. A Pedigree of a Recessive Human Trait Note that the trait can appear in offspring of parents without the trait. Heterozygotes who do not
Page 29: Human Genetics. A Pedigree of a Recessive Human Trait Note that the trait can appear in offspring of parents without the trait. Heterozygotes who do not

Aneuploidy occurs when one of the chromosomes is present in an abnormal number of copies.

Aneuploidy

Trisomy and monosomy are two forms of aneuploidy.

Page 30: Human Genetics. A Pedigree of a Recessive Human Trait Note that the trait can appear in offspring of parents without the trait. Heterozygotes who do not

Down Syndrome is Caused by Trisomy for Chromosome 21

Aneuploidy is remarkably common, causing termination of at least 25% of human conceptions.

Aneuploidy is also a driving force in cancer progression (virtually all cancer cells are aneuploid).

Page 31: Human Genetics. A Pedigree of a Recessive Human Trait Note that the trait can appear in offspring of parents without the trait. Heterozygotes who do not

The Frequency of Chromosome Non-Disjunction And Down Syndrome Rises Sharply with Maternal Age

The phenomenon is clear – the explanation isn’t.

Page 32: Human Genetics. A Pedigree of a Recessive Human Trait Note that the trait can appear in offspring of parents without the trait. Heterozygotes who do not

Patau Syndrome

Page 33: Human Genetics. A Pedigree of a Recessive Human Trait Note that the trait can appear in offspring of parents without the trait. Heterozygotes who do not

Edwards Syndrome

Page 34: Human Genetics. A Pedigree of a Recessive Human Trait Note that the trait can appear in offspring of parents without the trait. Heterozygotes who do not

Sex Chromosome Aneuploid Conditions are Common

Klinefelter syndrome

Turner Syndrome

Page 35: Human Genetics. A Pedigree of a Recessive Human Trait Note that the trait can appear in offspring of parents without the trait. Heterozygotes who do not

Klinefelter syndrome

Page 36: Human Genetics. A Pedigree of a Recessive Human Trait Note that the trait can appear in offspring of parents without the trait. Heterozygotes who do not

Jacob Syndrome

Page 37: Human Genetics. A Pedigree of a Recessive Human Trait Note that the trait can appear in offspring of parents without the trait. Heterozygotes who do not

Triple X Syndrome

Page 38: Human Genetics. A Pedigree of a Recessive Human Trait Note that the trait can appear in offspring of parents without the trait. Heterozygotes who do not

Turner Syndrome Xo

Page 39: Human Genetics. A Pedigree of a Recessive Human Trait Note that the trait can appear in offspring of parents without the trait. Heterozygotes who do not

There are 4 types of chromosome structural change – all of them associated with human disorders

Chromosome Structural Changes

Page 40: Human Genetics. A Pedigree of a Recessive Human Trait Note that the trait can appear in offspring of parents without the trait. Heterozygotes who do not
Page 41: Human Genetics. A Pedigree of a Recessive Human Trait Note that the trait can appear in offspring of parents without the trait. Heterozygotes who do not

A Boy with Cri-du-Chat Syndrome – a Debilitating Disorder Caused by Chromosome Deletion

Page 42: Human Genetics. A Pedigree of a Recessive Human Trait Note that the trait can appear in offspring of parents without the trait. Heterozygotes who do not

Cri-du-Chat is Caused by the Loss of the Short Arm of One Copy of Chromosome 5

Page 43: Human Genetics. A Pedigree of a Recessive Human Trait Note that the trait can appear in offspring of parents without the trait. Heterozygotes who do not

Translocations Lead to a Number of Human Cancers

In Burkitt’s lymphoma, a chromosome translocation

causes a cell cycle-promoting gene to always be active.

Page 44: Human Genetics. A Pedigree of a Recessive Human Trait Note that the trait can appear in offspring of parents without the trait. Heterozygotes who do not

Polyploidy

Polyploidy occurs when all the chromosomes are present in three or more copies.

Polyploidy is common in plants and rare in animals.

Page 45: Human Genetics. A Pedigree of a Recessive Human Trait Note that the trait can appear in offspring of parents without the trait. Heterozygotes who do not

Polyploids Are Created When Chromosome Number Doubles

A common way for this to occur is for the mitotic spindle to fail, leaving all chromosomes in one cell.

Page 46: Human Genetics. A Pedigree of a Recessive Human Trait Note that the trait can appear in offspring of parents without the trait. Heterozygotes who do not

Polyploidy is a Major Force in Plant Evolution

Roughly 35% of flowering plants (the most familiar plant species) arose through polyploidization.

Page 47: Human Genetics. A Pedigree of a Recessive Human Trait Note that the trait can appear in offspring of parents without the trait. Heterozygotes who do not

Most Crop Species are Polyploid

Polyploids, like the one on the left, are larger than their diploid progenitors (strawberry on right).

Page 48: Human Genetics. A Pedigree of a Recessive Human Trait Note that the trait can appear in offspring of parents without the trait. Heterozygotes who do not