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  • Genetics
Making a New Apple Cultivar
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Pair this activity with lessons on selective breeding. Students will identify desirable genetic traits in apples and use a coin flip to simulate the steps and time involved to breed a new cultivar of apple. (Photo by Tom Paolini on Unsplash.com)

Subject:
Agriculture
Agriculture and Natural Resources
Genetics
Life Science
Material Type:
Activity/Lab
Author:
National Agriculture in the Classroom
Date Added:
05/03/2023
Marshmallow Pig: Lesson 3 Digging Deeper, Unit 8 Animal Systems, DIGS AmeriCorps Curriculum CSU
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Marshmallow Pig. This is the Lesson 3 Digging Deeper activity, from Unit 8 Animal Systems, from the DIGS (Developing Individuals, Growing Stewards) AmeriCorps Curriculum from CSU. The curriculum focuses on introducing students in grades 3-5 to Colorado agriculture, industry and environmental issues.The curriculum is matched to State Standards 2021. The curriculum upon request. Visit: https://engagement.colostate.edu/programs-old/developing-individuals-growing-stewards/

Subject:
Agriculture
Agriculture and Natural Resources
Agriculture, Natural Resources and Energy
Anatomy/Physiology
Animal Science
Applied Science
Biology
Career and Technical Education
Ecology
Environmental Science
Environmental Studies
Genetics
Life Science
Mathematics
Measurement and Data
STEAM
Statistics and Probability
Zoology
Material Type:
Activity/Lab
Lesson
Lesson Plan
Provider:
CSU Extension Office
Provider Set:
AmeriCorps
Date Added:
02/24/2023
Meiosis
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Meiosis is the process by which gametes (eggs and sperm) are made. Gametes have only one set of chromosomes. Therefore, meiosis involves a reduction in the amount of genetic material. Each gamete has only half the chromosomes of the original germ cell. Explore meiosis with a computer model of dragons. Run meiosis, inspect the chromosomes, then choose gametes to fertilize. Predict the results of the dragon offspring and try to make a dragon without legs. Learn why all siblings do not look alike.

Subject:
Genetics
Life Science
Mathematics
Material Type:
Activity/Lab
Data Set
Lecture Notes
Provider:
Concord Consortium
Provider Set:
Concord Consortium Collection
Date Added:
01/13/2012
Mice Rule! (Or Not)
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Students explore the relationships between genetics, biodiversity, and evolution through a simple activity involving hypothetical wild mouse populations. First, students toss coins to determine what traits a set of mouse parents possesses, such as fur color, body size, heat tolerance, and running speed. Next they use coin tossing to determine the traits a mouse pup born to these parents possesses. These physical features are then compared to features that would be most adaptive in several different environmental conditions. Finally, students consider what would happen to the mouse offspring if those environmental conditions were to change: which mice would be most likely to survive and produce the next generation?

Subject:
Applied Science
Engineering
Genetics
Life Science
Material Type:
Activity/Lab
Lesson Plan
Provider:
TeachEngineering
Provider Set:
TeachEngineering
Date Added:
09/18/2014
Modern Genetics
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This initial module from the GENIQUEST project introduces the dragons and the inheritance of their traits, then delves into meiosis and its relationship to inherited traits. Students examine the effects of choosing different gametes on dragon offspring, and learn about genetic recombination by creating recombination events to generate specific offspring from two given parent dragons. Students learn about inbred strains and breed an inbred strain of dragons themselves.

Subject:
Genetics
Life Science
Material Type:
Activity/Lab
Data Set
Provider:
Concord Consortium
Provider Set:
Concord Consortium Collection
Date Added:
01/13/2012
Modi-FLIED
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CC BY-NC
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Students will breed fruit flies through several generations and record their data using mathematical models in order to demonstrate the inheritance of trait variations.

Subject:
Algebra
Genetics
Life Science
Mathematics
Measurement and Data
Numbers and Operations
Ratios and Proportions
Material Type:
Unit of Study
Provider:
Lane County STEM Hub
Provider Set:
Content in Context SuperLessons
Date Added:
04/08/2023
Molecular Motors
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CC BY
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Discover what controls how fast tiny molecular motors in our body pull through a single strand of DNA. How hard can the motor pull in a tug of war with the optical tweezers? Discover what helps it pull harder. Do all molecular motors behave the same?

Subject:
Genetics
Life Science
Material Type:
Simulation
Provider:
University of Colorado
Provider Set:
PhET Interactive Simulations
Date Added:
03/09/2023
Molecular Motors (AR)
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CC BY
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Discover what controls how fast tiny molecular motors in our body pull through a single strand of DNA. How hard can the motor pull in a tug of war with the optical tweezers? Discover what helps it pull harder. Do all molecular motors behave the same?

Subject:
Genetics
Life Science
Material Type:
Simulation
Provider:
University of Colorado
Provider Set:
PhET Interactive Simulations
Date Added:
03/09/2023
Monohybrid Fruit Fly Crosses: A Simulation
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CC BY-NC-SA
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This assignment uses a computer simulation of fruit fly genetics to have students design and interpret monohybrid crosses of a trait with simple dominant and recessive alleles. Detailed instructions with animated examples, background material, a sample report and a rubric are included.

Subject:
Genetics
Life Science
Material Type:
Activity/Lab
Data Set
Provider:
Science Education Resource Center (SERC) at Carleton College
Provider Set:
Pedagogy in Action
Date Added:
04/12/2023
Ocean Acidification: A Systems Approach to a Global Problem
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CC BY-NC
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In this curriculum module, students in high school life science, marine science, and/or chemistry courses act as interdisciplinary scientists and delegates to investigate how the changing carbon cycle will affect the oceans along with their integral populations.

The oceans cover 70 percent of the planet and play a critical role in regulating atmospheric carbon dioxide through the interaction of physical, chemical, and biological processes. As a result of anthropogenic activity, a doubling of the atmospheric CO2 concentration (to 760 ppm) is expected to occur by the end of this century. A quarter of the total CO2 emitted has already been absorbed by the surface oceans, changing the marine carbonate system, resulting in a decrease in pH, a change in carbonate-ion concentrations, and a change in the speciation of macro and micronutrients. The shift in the carbonate system is already drastically affecting biological processes in the oceans and is predicted to have major consequences on carbon export to the deep ocean with reverberating effects on atmospheric CO2. Put in simple terms, ocean acidification is a complex phenomenon with complex consequences. Understanding complexity and the impact of ocean acidification requires systems thinking – both in research and in education. Scientific advancement will help us better understand the problem and devise more effective solutions, but executing these solutions will require widespread public participation to mitigate this global problem.

Through these lessons, students closely model what is occurring in laboratories worldwide and at Institute for Systems Biology (ISB) through Monica Orellana’s research to analyze the effect CO2 has on ocean chemistry, ecosystems and human societies. Students experiment, analyze public data, and prepare for a mock summit to address concerns. Student groups represent key “interest groups” and design two experiments to observe the effects of CO2 on seawater pH, diatom growth, algal blooms, nutrient availability, and/or shell dissolution.

Subject:
Agriculture and Natural Resources
Anthropology
Applied Science
Atmospheric Science
Biology
Chemistry
Computer, Networking and Telecommunications Systems
Earth and Space Science
Environmental Science
Environmental Studies
Genetics
Hydrology
Information Science
Life Science
Maritime Science
Oceanography
Physical Science
Social Science
Material Type:
Module
Author:
Aisha McKee
Alexis Boleda
Alexis Valauri-Orton
Allison Lee Cusick
Anna Farrell-Sherman
Baliga Lab
Barbara Steffens
Claudia Ludwig
Danny Thomson
Dexter Chapin
Dina Kovarik
Donald Cho
Eric Grewal
Eric Muhs
Helen Ippolito
Holly Kuestner
Institute for Systems Biology
Jeannine Sieler
Jennifer Duncan-Taylor
Jia Hao Xu
JoAnn Chrisman
Jocelyn Lee
Kedus Getaneh
Kevin Baker
Mari Knutson Herbert
Megan DeVault
Meredith Carlson
Michael Walker
Monica V. Orellana
Nitin S. Baliga
Olachi Oleru
Raisah Vestindottir
Steven Do
Systems Education Experiences
William Harvey
Zac Simon
Date Added:
05/04/2023
Open Textbook Library
Unrestricted Use
CC BY
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"Open textbooks are textbooks that have been funded, published, and licensed to be freely used, adapted, and distributed. These books have been reviewed by faculty from a variety of colleges and universities to assess their quality. These books can be downloaded for no cost, or printed at low cost."

Subject:
Agriculture and Natural Resources
Algebra
Arts and Humanities
Biology
Business and Communication
Composition and Rhetoric
Comprehensive Health and Physical Education
Criminal Justice
Earth and Space Science
English Language Arts
Genetics
Graphic Arts
History
Hospitality, Tourism and Social Service Careers
Journalism
Life Science
Marketing
Mathematics
New Media and Technology
Nutrition
Physical Geography
Psychology
Public Relations
Religious Studies
Social Science
Sociology
Visual Arts and Design
World Cultures
World History
Material Type:
Module
Author:
Open Textbook Library
Date Added:
04/11/2023
Pedigrees and the Inheritance of Lactose Intolerance
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In this activity students analyze a family’s pedigrees to make a claim based on evidence about mode of inheritance of a lactose intolerance trait, determine the most likely inheritance pattern of a trait, and analyze variations in DNA to make a claim about which variants are associated with specific traits. This activity serves as a supplement to the film Got Lactose? The Co-evolution of Genes and Culture (http://www.hhmi.org/biointeractive/making-fittest-got-lactase-co-evolution-genes-and-culture). The film shows a scientist as he tracks down the genetic changes associated with the ability to digest lactose as adults. A detailed teacher’s guide that includes curriculum connections, teaching tips, time requirements, answer key and a student guide can be downloaded at http://www.hhmi.org/biointeractive/pedigrees-and-inheritance-lactose-intolerance. Six supporting resource and two “click and learn” activities are also found on the link.

Subject:
Applied Science
Biology
Genetics
Health, Medicine and Nursing
Life Science
Material Type:
Lesson Plan
Provider:
National Science Teachers Association (NSTA)
Provider Set:
NGSS@NSTA
Date Added:
10/20/2023
Phenylketonuira
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In this activity, students are assigned different alleles of the gene for phenylalanine hydroxylase to research using OMIM (Online Mendelian Inheritance in Man). They are then asked to both explain and illustrate how this mutation may cause the disease phenylketonuria (PKU).

Subject:
Genetics
Life Science
Material Type:
Activity/Lab
Assessment
Data Set
Homework/Assignment
Provider:
Science Education Resource Center (SERC) at Carleton College
Provider Set:
Starting Point (SERC)
Date Added:
04/12/2023
Project Organization and Management for Genomics
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CC BY
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Data Carpentry Genomics workshop lesson to learn how to structure your metadata, organize and document your genomics data and bioinformatics workflow, and access data on the NCBI sequence read archive (SRA) database. Good data organization is the foundation of any research project. It not only sets you up well for an analysis, but it also makes it easier to come back to the project later and share with collaborators, including your most important collaborator - future you. Organizing a project that includes sequencing involves many components. There’s the experimental setup and conditions metadata, measurements of experimental parameters, sequencing preparation and sample information, the sequences themselves and the files and workflow of any bioinformatics analysis. So much of the information of a sequencing project is digital, and we need to keep track of our digital records in the same way we have a lab notebook and sample freezer. In this lesson, we’ll go through the project organization and documentation that will make an efficient bioinformatics workflow possible. Not only will this make you a more effective bioinformatics researcher, it also prepares your data and project for publication, as grant agencies and publishers increasingly require this information. In this lesson, we’ll be using data from a study of experimental evolution using E. coli. More information about this dataset is available here. In this study there are several types of files: Spreadsheet data from the experiment that tracks the strains and their phenotype over time Spreadsheet data with information on the samples that were sequenced - the names of the samples, how they were prepared and the sequencing conditions The sequence data Throughout the analysis, we’ll also generate files from the steps in the bioinformatics pipeline and documentation on the tools and parameters that we used. In this lesson you will learn: How to structure your metadata, tabular data and information about the experiment. The metadata is the information about the experiment and the samples you’re sequencing. How to prepare for, understand, organize and store the sequencing data that comes back from the sequencing center How to access and download publicly available data that may need to be used in your bioinformatics analysis The concepts of organizing the files and documenting the workflow of your bioinformatics analysis

Subject:
Computer Science
Computer, Networking and Telecommunications Systems
Genetics
Information Science
Life Science
Mathematics
Measurement and Data
Material Type:
Module
Provider:
The Carpentries
Date Added:
04/11/2023
Really Ancient Fossils STEM Kit
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CC BY-NC-SA
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Really Ancient Fossils STEM Kit. The Natural Sciences Education & Outreach Center collaborates with CSU faculty, National Parks and citizen science programs to translate their current scientific research into unique STEM experiences for students in the form of Educational Kits that can be checked out. Each kit contains just about all of the materials needed (minus common things like water and paper towels) to explore some really interesting scientific research topics.The kits are available for teachers and informal educators in Colorado to check out for a duration of a week by submitting either a local pickup form or a delivery form available at the linked website. Due to the extreme weight of the sand used in this Kit, local pickup is the only option. This kit is provided free for educational use. This kit is also available in Spanish.

Subject:
Astronomy
Atmospheric Science
Biology
Botany
Career and Technical Education
Chemistry
Computer, Networking and Telecommunications Systems
Earth and Space Science
Ecology
Genetics
Geology
Geoscience
Information Science
Life Science
Mathematics
Measurement and Data
Numbers and Operations
Oceanography
Paleontology
Physical Geography
Physical Science
Physics
Ratios and Proportions
Statistics and Probability
Zoology
Material Type:
Activity/Lab
Case Study
Diagram/Illustration
Interactive
Lesson
Lesson Plan
Primary Source
Reading
Simulation
Student Guide
Unit of Study
Provider:
Colorado State University
Provider Set:
CSU Natural Sciences Education & Outreach Center
Date Added:
02/06/2023
A Recipe for Traits
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Students create and decode DNA for man’s best friend to observe how variations in DNA lead to the inheritance of different traits. Strips of paper that represent DNA are randomly selected and used to assemble the dog's DNA. Students read the DNA and create a drawing of their pet, and compare it with others in the class to check for similarities and differences.

Subject:
Biology
Genetics
Life Science
Material Type:
Activity/Lab
Provider:
National Science Teachers Association (NSTA)
Provider Set:
NGSS@NSTA
Date Added:
10/20/2023
Science Learning
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Genetic Engineering interactive learning website that includes:
Journey of a Gene - Learn the steps of genetic engineering to help us make soybeans that are resistant to Soybean Sudden Death Syndrome.
Enviropig - Learn the steps of genetic engineering to help us make environmentally friendly pigs.
Genetic Engineering: Oomycete - Learn the steps of genetic engineering used in the process of developing oomycete resistant soybean.
Farmers, Consumers, and GMOs - The world in which we live is constantly changing. Farmers and consumers need to adapt in order to deal with those changes. The use of genetically modified organisms (GMOs) is one way to help them with adapting. The purpose of this learning environment is to provide the knowledge necessary to assist farmers and consumers to navigate through our changing world.

Subject:
Agriculture
Agriculture and Natural Resources
Genetics
Life Science
Material Type:
Interactive
Author:
Universtiy of Nebraska - Lincoln
Date Added:
05/03/2023
Secretos de los Hibernadores
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CC BY-NC-SA
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Secretos de los Hibernadores. El Centro de Extensión y Educación en Ciencias Naturales colabora con la facultad de CSU, los Parques Nacionales y los programas de ciencia ciudadana para traducir su investigación científica actual en experiencias STEM únicas para los estudiantes en forma de kits educativos que se pueden prestar. Cada kit contiene casi todos los materiales necesarios (menos cosas comunes como agua y toallas de papel) para explorar algunos temas de investigación científica realmente interesantes. enviando un formulario de recogida local o un formulario de entrega disponible en el sitio web vinculado. Utilice la información de contacto en la página de descripción general del kit STEM para obtener más información. https://www.cns-eoc.colostate.edu/stem-kits/ Este kit se proporciona de forma gratuita para uso educativo.

Subject:
Agriculture
Agriculture and Natural Resources
Anatomy/Physiology
Applied Science
Biology
Career and Technical Education
Chemistry
Comprehensive Health and Physical Education
Ecology
Environmental Science
Environmental Studies
Genetics
Geometry
Health Sciences, Criminal Justice and Public Safety
Health, Medicine and Nursing
Life Science
Mathematics
Nutrition
Physical Science
Physics
Zoology
Material Type:
Activity/Lab
Case Study
Diagram/Illustration
Educational Kit
Interactive
Lesson
Lesson Plan
Primary Source
Reading
Simulation
Student Guide
Unit of Study
Provider:
Colorado State University
Provider Set:
Natural Sciences Education & Outreach Center
Date Added:
02/24/2023