BIOLOGY:CONCEPTS+APPL.(LOOSELEAF)
BIOLOGY:CONCEPTS+APPL.(LOOSELEAF)
10th Edition
ISBN: 9781305967359
Author: STARR
Publisher: CENGAGE L
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Chapter 14, Problem 2GP

Human females have two X chromosomes (XX); males have one X and one Y chromosome (XY).

a. With respect to X-linked alleles, how many different types of gametes can a male produce?
b. A female homozygous for an X-linked allele can produce how many types of gametes with respect to that allele?
c. A female heterozygous for an X-linked allele can produce how many types of gametes with respect to that allele?
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Human females have two X chromosomes (XX); males have one X and one Y chromosome (XY). a. With respect to X chromosome alleles, how many different types of gametes can a male produce? b. If a female is homozygous for an allele on an X chromosome, how many types of gametes can she produce with respect to that allele? c. If a female is heterozygous for an X chromosome allele, how many types of gametes can she produce with respect to that allele?
Researchers discovered recently that the sole functionof the SRY protein is to activate an autosomal genecalled Sox9 in the presumptive gonad (before it has“decided” to become a testis or an ovary).a. What would be the sex of an XY individual homozygous for nonfunctional mutant alleles of Sox9?Explain.b. Given your answer to part (a), why is SRY, ratherthan Sox9, considered the male determining factor?(Hint: What do you think would happen if you didan experiment like the one in the Fast Forward BoxTransgenic Mice Prove That SRY Is the MalenessFactor, except that you used a Sox9 transgeneinstead of SRY?)
Mendel's observation of the random distribution of two different traits from parents to offspring (giving the 9:3:3:1 ratio of phentypes) was due to    A. The random and independent way in which each pair of homologous chromosomes lines up at the metaphase plate during meiosis I.  B. The random nature of the fertilization of ova by sperm.  C. The random distribution of the sister chromatids to the two daughter cells during anaphase II.  D. The relatively small degree of homology shared by the X and Y chromosomes.
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