lecture 9- tetrad analysis Flashcards

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1
Q

MI type segregation

A

4:4 segregation (one allele in top half and the other allele in the bottom half of the ascus

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2
Q

MII type segregation

A

2:2:2:2 segregation (both alleles are present in both halves of the ascus

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3
Q

independent assortment

A

the independent assortment of 2 genes will result in 50% parental ditype (PD) and 50% non-parental ditype (NPD or recombinant tyoe)

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4
Q

complete linkage

A

complete linkage of 2 genes will result in only parental ditype ascus

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5
Q

linkage of 2 genes with crossover

A

this will result in the number of PD&raquo_space;> number of NPD asci

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6
Q

parental ditype (PD)

A

no crossing over between loci or double crossing over of the same 2 chromatids

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7
Q

non parental ditype

A

all spores are recombinant- and all 4 chromatids are involved in the double cross over

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8
Q

tretratype (T)

A

1/2 spores are recombinant- single crossing over of 2 chromatids or double crossing over involving 3 chromatids

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9
Q

parental ditype WITH MII segregation

A

crossover between one locus and centromere, but no crossing over between loci

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10
Q

penetrance

A

the frequency with which a genotype expresses a phenotype. A trait has low penetrance if few individuals with the gene(s) express it

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11
Q

expressivity

A

the degree to which a trait is expressed in individuals having the gene(s)

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12
Q

sex-limited traits

A

the expression of certain traits is only in one of the sexes. the traits encoded by genes on the autosomes but the character is expressed only in one sex

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13
Q

sex-influenced traits

A

expression of certain traits is influenced by the sex. this appears in both of the sexes, but the frequency or degree of the phenotypic expression is different between the sexes

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14
Q

effects of environment on phenotype

A

the phenotype results from the genotype interacting with the environment, changes in the environment can alter the phenotype

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15
Q

multiple alleles

A

essentially all genes have not just two alleles, but many since there can be mutations at any of 1000 or more bases in a gene and result in many possible alleles

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16
Q

blood type A

A

I^A I^A or I^A i

17
Q

blood type B

A

I^B I^B or I^B i

18
Q

blood type AB

A

I^A I^B

19
Q

blood type O

A

i i

20
Q

codominance

A

usually involves a system in which the 2 alleles of a single gene have slightly different products, both of which appear in the expression of the phenotype. this is usually molecular