
Public learning track
Transmission Genetics, Linkage, and Pedigree Analysis
10th Grade · Science · Open Global Science
7 lessons
Goal
Solve complex monohybrid, dihybrid, and sex-linked crosses, and interpret pedigrees using Mendelian principles and Morgan's chromosome theory.
Featured Diagrams
Mendelian Principles and Monohybrid Test Crosses
7 lessons
0 of 7 done
- 1Mendelian Principles and Monohybrid Test CrossesUp nextStart
- 2Dihybrid Crosses and the Law of Independent AssortmentPremiumNot started yet
- 3Incomplete Dominance and CodominanceNot started yet
- 4Multiple Alleles and the ABO Blood Group SystemNot started yet
- 5Sex-Linked Inheritance and X-Linked DisordersNot started yet
- 6Morgan's Chromosome Theory, Linkage, and Genetic MappingNot started yet
- 7Constructing and Interpreting Human Pedigree ChartsNot started yet
Curriculum Framework
10th Grade · Science · Open Global Science
1
8 lessons
Molecular Genetics and Gene Expression Mechanisms
Explain the molecular mechanisms of the central dogma, including transcription, RNA processing, translation, and eukaryotic gene regulation.
2
7 lessons
Transmission Genetics, Linkage, and Pedigree Analysis
Solve complex monohybrid, dihybrid, and sex-linked crosses, and interpret pedigrees using Mendelian principles and Morgan's chromosome theory.
3
8 lessons
Chromosomal Mutations, Genetic Disorders, and Oncogenesis
Analyze the molecular origins of point mutations, chromosomal aberrations, mutagenic agents, and the multi-step genetic basis of cancer.
4
8 lessons
Biotechnology, Molecular Tools, and Bioethics
Evaluate recombinant DNA techniques, genomics tools, stem cell therapies, cloning, and ethical considerations in biotechnology.
5
8 lessons
Evolutionary Mechanisms, Population Genetics, and Speciation
Synthesize evolutionary lines of evidence, quantify allele frequency shifts, model natural selection, and trace hominin phylogeny.
6
8 lessons
Biodiversity, Taxonomic Domains, and the Tree of Life
Classify organisms across three domains and major kingdoms using cladistics, dichotomous keys, and structural/life-cycle adaptations.