Genetics forms the basis of all modern biology, but its core concepts can seem overwhelming. This course provides a clear, structured introduction to the essential science of heredity.
By the end of this program, you will possess a strong working knowledge of both classical Mendelian patterns and the molecular mechanisms that govern DNA replication, gene expression, and mutation. You will be prepared to tackle complex genetic problems and understand the principles underlying modern genomic science.
What you'll learn:
* Understand the laws of Mendelian inheritance and solve classic genetic cross problems.
* Analyze deviations from Mendelian ratios, including linkage, epistasis, and sex-linked traits.
* Master the molecular structure of DNA and RNA, and the processes of replication, transcription, and translation.
* Apply principles of gene regulation in both prokaryotes and eukaryotes, focusing on operons and transcription factors.
* Practice calculating allele and genotype frequencies using the Hardy-Weinberg equilibrium model.
* Grasp basic concepts of modern genomics and fundamental sequencing technologies.
The curriculum begins with foundational terminology and the historical context of genetic discovery before moving into detailed studies of inheritance patterns. The latter half focuses intensely on the central dogma of molecular biology and the intricate mechanisms controlling gene function.
This course is designed for absolute beginners, students entering undergraduate biology programs, or anyone seeking a robust, foundational understanding of genetics. No prior knowledge of biology or chemistry is required.
Start building your essential knowledge base in biological science today.
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