A geneticist interested in studying variations and patterns of inherit...
Out of 9:3:3:1 = 16
9+3 will be tall.
Therefore, 12/16 x 80 = 60.
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A geneticist interested in studying variations and patterns of inherit...
Importance of Organism Selection in Genetic Studies
When selecting organisms for genetic experiments, the choice significantly impacts the efficiency and outcomes of research. A geneticist's preference often revolves around life cycle duration.
Shorter Life Cycle
- Rapid Generational Turnover: Organisms with shorter life cycles, such as fruit flies or bacteria, allow for quick observation of multiple generations.
- Faster Data Collection: Researchers can quickly gather data on traits, mutations, and inheritance patterns.
- Efficient Experimentation: The ability to conduct experiments over many generations in a short time enhances the understanding of genetic principles.
Normal Life Cycle
- Realistic Model: Organisms with normal life cycles reflect typical environmental and biological conditions.
- Balanced Study: They offer insights into genetic variations while maintaining ecological relevance.
Longer Life Cycle
- Complex Traits Analysis: Organisms with longer life cycles, such as plants or mammals, provide insights into complex traits and long-term evolutionary processes.
- In-depth Studies: They allow for the study of traits that may require extended observations and generations to manifest.
Combining Short and Long Life Cycles
- Comprehensive Understanding: Utilizing both organisms with shorter and longer life cycles enables a more holistic approach to genetics.
- Versatile Research: This combination allows researchers to explore immediate variations while also studying long-term genetic inheritance patterns.
In conclusion, the correct answer is option 'D' because selecting organisms with both shorter and longer life cycles provides geneticists with a versatile toolkit to explore variations and patterns of inheritance effectively.