Chromosomal rearrangement 1 Chromosomal rearrangement 2 centromere A1 B Chromosomal rearrangement 3 A2B centromere centromere. с centromere JU M3N O MAN O centromere centromere GTH centromere centromere a) Why do we say that all organisms with chromosomal rearrangement 1 will always have a 50% reduction in fertility (non-viable gametes)? Please mention the name of rearrangement 1 in your answer. ›) Does a 50% reduction in fertility (due to non-viable gametes) always apply to organisms with chromosomal rearrangements 2 or 3? (or are there situations when this does not happen?). Please mention the name of rearrangements 2 and 3 in your answer and if/how the reduction n fertility is due to different causes.
Chromosomal rearrangement 1 Chromosomal rearrangement 2 centromere A1 B Chromosomal rearrangement 3 A2B centromere centromere. с centromere JU M3N O MAN O centromere centromere GTH centromere centromere a) Why do we say that all organisms with chromosomal rearrangement 1 will always have a 50% reduction in fertility (non-viable gametes)? Please mention the name of rearrangement 1 in your answer. ›) Does a 50% reduction in fertility (due to non-viable gametes) always apply to organisms with chromosomal rearrangements 2 or 3? (or are there situations when this does not happen?). Please mention the name of rearrangements 2 and 3 in your answer and if/how the reduction n fertility is due to different causes.
Human Anatomy & Physiology (11th Edition)
11th Edition
ISBN:9780134580999
Author:Elaine N. Marieb, Katja N. Hoehn
Publisher:Elaine N. Marieb, Katja N. Hoehn
Chapter1: The Human Body: An Orientation
Section: Chapter Questions
Problem 1RQ: The correct sequence of levels forming the structural hierarchy is A. (a) organ, organ system,...
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please answer parts a and b
Expert Solution
Step 1: Introduction
In this exercise, we’re diving into the complex world of genetics, particularly centering on chromosomal rearrangements and their effect on fertility. We’re analyzing three sorts of chromosomal rearrangements. This exercise invites us to apply our understanding of genetics to real-world scenarios and consider the complex transaction between chromosomal structure and reproductive viability.
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