Biology, Pages 251-265Neil Campbell and Jane Reece's BIOLOGY remains unsurpassed as the most successful majors biology textbook in the world. This text has invited more than 4 million students into the study of this dynamic and essential discipline. |
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Page 42
... A. Concept 14.2 : The laws of probability govern Mendelian inheritance
Mendel's laws of segregation and independent assortment reflect the same rules
of probability that apply to tossing coins , rolling dice , and drawing cards from a
deck .
... A. Concept 14.2 : The laws of probability govern Mendelian inheritance
Mendel's laws of segregation and independent assortment reflect the same rules
of probability that apply to tossing coins , rolling dice , and drawing cards from a
deck .
Page 46
We can apply the same reasoning to an Fı monohybrid cross ( Figure 14.9 ) . With
seed shape in pea plants as the heritable character , the genotype of Fı plants is
Rr . Segregation in a heterozygous plant is like flipping a coin : Each egg ...
We can apply the same reasoning to an Fı monohybrid cross ( Figure 14.9 ) . With
seed shape in pea plants as the heritable character , the genotype of Fı plants is
Rr . Segregation in a heterozygous plant is like flipping a coin : Each egg ...
Page 60
independent assortment apply even to more complex patterns of inheritance . In
this section , we will extend Mendelian genetics to hereditary patterns that were
not reported by Mendel . 1 1 Extending Mendelian Genetics for a Single Gene ...
independent assortment apply even to more complex patterns of inheritance . In
this section , we will extend Mendelian genetics to hereditary patterns that were
not reported by Mendel . 1 1 Extending Mendelian Genetics for a Single Gene ...
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Common terms and phrases
affect appearance apply blood group breeding brown called carbohydrate chance Chapter characters chromosomes coin combinations complex Concept consider depending determine developed dihybrid disease dominant allele enzyme equal event example experiments F1 hybrids F2 offspring factor Figure Fı plants flower color four gametes garden peas genotype green heads heritable heterozygotes heterozygous homozygotes homozygous human hybrids hypothesis identical incomplete dominance independent assortment individuals inheritance law of independent law of segregation locus mated Mendel Mendelian genetics molecules monohybrid cross multiple normal observed occur organism organism's pairs parent particular pea plants phenotypic ratio pigment population possible Ppyyrr predicted present principles produced Punnett square purple flowers purple-flower range recessive allele recessive trait red blood cells refer relation round rules of probability seed seed shape self-pollinate separate simple single gene specific studied toss true-breeding variations varieties vary white flowers white-flower allele wrinkled YyRr