vo F1 plants that are heterozygous for both genes were crossed and the following offspring resulted: Purple, smooth: 206 Purple, shrunken: 83 Yellow, smooth: 65 Yellow, shrunken: 30 onduct a chi squared test for linkage between these two genes, testing the null hypothesis that the genes are unlinked. What is the value of chi squared O 0.46 Ⓒ4.32 O 2.36 O 1.5 art 3 ick on the screened area of the chi-square table to indicate the values for this problem between which the chi-square value falls. Degrees of Freedom 1 art 4 2 3 4 5 P = 0.99 0.020 0.115 0.297 0.000157 0.00393 0.0642 0.455 0.554 Chi-square Values and Probability ased on your p-value, 0.95 0.103 0.352 0.711 0.80 1.145 0.446 0.50 1.649 1.386 1.005 2.366 3.357 2.343 4.351 0.20 1.642 3.841 3.219 0.05 5.989 5.991 9.488 0.01 4.642 7.815 11.345 6.635 O the observed values are not significantly different from the expected values. O the observed values are significantly different from the expected values. 9.210 13.277 7.289 11.070 15.086
Genetic Variation
Genetic variation refers to the variation in the genome sequences between individual organisms of a species. Individual differences or population differences can both be referred to as genetic variations. It is primarily caused by mutation, but other factors such as genetic drift and sexual reproduction also play a major role.
Quantitative Genetics
Quantitative genetics is the part of genetics that deals with the continuous trait, where the expression of various genes influences the phenotypes. Thus genes are expressed together to produce a trait with continuous variability. This is unlike the classical traits or qualitative traits, where each trait is controlled by the expression of a single or very few genes to produce a discontinuous variation.
3 questions in one problem: a, b, and c.
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