Genetic Disorders Articles (pg313)

MrAsciencedotcom
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Resource Type
Standards
NGSSMS-LS3-1
NGSSMS-LS3-2
Formats Included
- PDF
Pages
8 pages

MrAsciencedotcom
17 Followers
Also included in
- This is a bundle of all of the lessons, labs, PowerPoints, and worksheets for Unit 3: Genetics. The bundle also includes the Unit 3 Test and its answer key. For a walkthrough of the unit, including pictures and videos, please click here.Price $14.99Original Price $19.00Save $4.01
- This bundle includes an entire year's worth of material. It includes lessons, labs, projects, tests and more. The seven units include are as follows:Unit 1 - Forces and MotionUnit 2 - ChemistryUnit 3 - GeneticsUnit 4 - EvolutionUnit 5- AstronomyUnit 6 - Earth's SystemsUnit 7 - Environmental ScienceTPrice $100.00Original Price $139.00Save $39.00
Description
Genetic Disorders are one of the most fascinating topics in Unit 3. Just a few incorrect letters in a single gene can change a person’s entire life. Today we studied just a few examples of genetic disorders, including Down Syndrome, Turner Syndrome, Cystic Fibrosis, Treacher-Collins Syndrome, Cancer, and Alcoholism. Students read a short article (posted above) about each disorder, then took notes on Page 313 (also posted above).
Total Pages
8 pages
Answer Key
N/A
Teaching Duration
45 minutes
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Standards
to see state-specific standards (only available in the US).
NGSSMS-LS3-1
Develop and use a model to describe why structural changes to genes (mutations) located on chromosomes may affect proteins and may result in harmful, beneficial, or neutral effects to the structure and function of the organism. Emphasis is on conceptual understanding that changes in genetic material may result in making different proteins. Assessment does not include specific changes at the molecular level, mechanisms for protein synthesis, or specific types of mutations.
NGSSMS-LS3-2
Develop and use a model to describe why asexual reproduction results in offspring with identical genetic information and sexual reproduction results in offspring with genetic variation. Emphasis is on using models such as Punnett squares, diagrams, and simulations to describe the cause and effect relationship of gene transmission from parent(s) to offspring and resulting genetic variation.