sses, you breeding Hed ór true-breeding Yellow lines to true-breeding Green lines. You notice that whenever you cross Green butterflies to either a Red parent or Yellow parent, all the F, progeny are Green. Interestingly, recombinant and genomic mapping analyses reveal that the allele for the Green phenotype maps to a different chromosome than the locus coding for the Red/Yellow phenotype. What is the most likely conclusion you can draw from these results? Red, Yellow, and Green phenotypes operate in a pathway, where the gene resulting in the Red/Yellow phenotype is epistatic to the gene at the Green locus. Red, Yellow, and Green phenotypes operate in a pathway, where the gene resulting in the Green phenotype is epistatic to the gene at the Red/Yellow locus. Red, Yellow, and Green phenotypes are determined by co- dominant alleles, where Green is the "most" dominant allele. The locus determining the Green Phenotype and the locus determining the Red/Yellow phenotype demonstrate no gene interaction. O Red, Yellow, and Green phenotypes are determined by alleles in an incomplete dominance relationship, where Green is the "most" dominant allele.
sses, you breeding Hed ór true-breeding Yellow lines to true-breeding Green lines. You notice that whenever you cross Green butterflies to either a Red parent or Yellow parent, all the F, progeny are Green. Interestingly, recombinant and genomic mapping analyses reveal that the allele for the Green phenotype maps to a different chromosome than the locus coding for the Red/Yellow phenotype. What is the most likely conclusion you can draw from these results? Red, Yellow, and Green phenotypes operate in a pathway, where the gene resulting in the Red/Yellow phenotype is epistatic to the gene at the Green locus. Red, Yellow, and Green phenotypes operate in a pathway, where the gene resulting in the Green phenotype is epistatic to the gene at the Red/Yellow locus. Red, Yellow, and Green phenotypes are determined by co- dominant alleles, where Green is the "most" dominant allele. The locus determining the Green Phenotype and the locus determining the Red/Yellow phenotype demonstrate no gene interaction. O Red, Yellow, and Green phenotypes are determined by alleles in an incomplete dominance relationship, where Green is the "most" dominant allele.
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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I’m having trouble solving this questions about which is best conclusion answer can you please help?
![In additional crosses, you mate true-breeding Red or true-breeding
Yellow lines to true-breeding Green lines. You notice that whenever you
cross Green butterflies to either a Red parent or Yellow parent, all the
F, progeny are Green. Interestingly, recombinant and genomic
mapping analyses reveal that the allele for the Green phenotype maps
to a different chromosome than the locus coding for the Red/Yellow
phenotype. What is the most likely conclusion you can draw from these
results?
Red, Yellow, and Green phenotypes operate in a pathway, where
the gene resulting in the Red/Yellow phenotype is epistatic to the
gene at the Green locus.
O Red, Yellow, and Green phenotypes operate in a pathway, where
the gene resulting in the Green phenotype is epistatic to the
gene at the Red/Yellow locus.
O Red, Yellow, and Green phenotypes are determined by co-
dominant alleles, where Green is the "most" dominant allele.
O The locus determining the Green Phenotype and the locus
determining the Red/Yellow phenotype demonstrate no gene
interaction.
O Red, Yellow, and Green phenotypes are determined by alleles in
an incomplete dominance relationship, where Green is the
"most" dominant allele.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fb2317904-e9b6-45e7-a0b8-8f7e73264ddd%2Fe21b079f-65c5-4f2f-99bb-c335db9cc1cf%2Fmhprzmr_processed.jpeg&w=3840&q=75)
Transcribed Image Text:In additional crosses, you mate true-breeding Red or true-breeding
Yellow lines to true-breeding Green lines. You notice that whenever you
cross Green butterflies to either a Red parent or Yellow parent, all the
F, progeny are Green. Interestingly, recombinant and genomic
mapping analyses reveal that the allele for the Green phenotype maps
to a different chromosome than the locus coding for the Red/Yellow
phenotype. What is the most likely conclusion you can draw from these
results?
Red, Yellow, and Green phenotypes operate in a pathway, where
the gene resulting in the Red/Yellow phenotype is epistatic to the
gene at the Green locus.
O Red, Yellow, and Green phenotypes operate in a pathway, where
the gene resulting in the Green phenotype is epistatic to the
gene at the Red/Yellow locus.
O Red, Yellow, and Green phenotypes are determined by co-
dominant alleles, where Green is the "most" dominant allele.
O The locus determining the Green Phenotype and the locus
determining the Red/Yellow phenotype demonstrate no gene
interaction.
O Red, Yellow, and Green phenotypes are determined by alleles in
an incomplete dominance relationship, where Green is the
"most" dominant allele.
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