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Q.(a) Give the scientific name of the organism used by Morgan to study sex-linked traits.

(b) Write any four reasons why this organism made it an ideal experimental model.
CBSECBSE Class XII Board 2026Subjective· 3mImportance★★★★★
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T.H. Morgan used the fruit fly, Drosophila melanogaster, as his experimental organism due to its short life cycle, ease of culture, high progeny count, and distinct sexual characteristics, making it ideal for genetic studies.

When Gregor Mendel laid the foundational principles of inheritance using pea plants, he meticulously observed traits that segregated independently and followed predictable patterns. However, the complexity of inheritance, particularly the concept of genes located on chromosomes and their linkage, required a different kind of experimental model. This is where Thomas Hunt Morgan stepped in, choosing an organism that would allow him to delve deeper into chromosomal theory and the intricacies of genetic linkage and recombination.

Morgan's choice of organism was pivotal to his groundbreaking work on sex-linked traits and genetic mapping. He needed an organism that was easy to manage, reproduced quickly, and displayed clear, observable genetic variations.

  1. The scientific name of the organism used by Morgan to study sex-linked traits is Drosophila melanogaster.
    Note

    Drosophila melanogaster is commonly known as the fruit fly. Its small size and prevalence around ripe fruits make it a familiar insect, but its genetic properties are what made it invaluable to scientific research.

  2. Drosophila melanogaster proved to be an ideal experimental model for several compelling reasons, which allowed Morgan and his students to conduct extensive genetic studies efficiently:
  • Short Life Cycle: Drosophila completes its entire life cycle in approximately two weeks. This rapid generation time meant that Morgan could study multiple generations within a short period, observing inheritance patterns and the effects of crosses much faster than with organisms having longer life cycles.
  • Ease of Culture: These flies can be grown and maintained very easily in the laboratory on simple synthetic media. This made it economical and practical to keep large populations for experiments, ensuring a continuous supply of experimental subjects without complex requirements.
  • High Progeny Count: A single mating between two Drosophila flies produces a large number of offspring. This high fecundity is crucial for genetic studies, as it allows for statistically significant data collection and the observation of rare genetic events, such as recombination, which might be missed in smaller sample sizes. …

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