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Properties of spontaneous mutational variance and covariance for wing size and shape in drosophila melanogaster

机译:果蝇黑体翼大小和形状的自发突变方差和协方差性质

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We estimated mutational variance-covariance matrices, M, for wing shape and size in two genotypes of Drosophila melanogaster after 192 generations of mutation accumulation. We characterized 21 potentially independent aspects of wing shape and size using geometric morphometrics, and analyzed the data using a likelihood-based factor-analytic approach. We implement a previously unused analysis that describes those directions with the greatest difference in evolvability between pairs of matrices. There are significant mutational effects on 19 of 21 possible aspects of wing form, consistent with the high dimensionality of standing genetic variation for wing shape previously identified in D. melanogaster. Mutations have partially recessive effects, consistent with average dominance around 0.25. Sex-specific matrices are relatively similar, although male-specific matrices are slightly larger, as expected due to dosage compensation on the X chromosome. Genotype-specific matrices are quite different. Matrices may differ both because of sampling error based on small samples of mutations with large phenotypic effects, and because of the mutational properties of the genotypes. Genotypic differences are likely to be involved, as the two genotypes have different molecular mutation rates and properties.
机译:我们估计了192代突变积累后果蝇的两种基因型的翼形和大小的变异方差-协方差矩阵M。我们使用几何形态计量学对机翼形状和大小的21个潜在独立方面进行了表征,并使用基于似然性的因子分析方法对数据进行了分析。我们执行了先前未使用的分析,该分析描述了在矩阵对之间可进化性差异最大的那些方向。对翼形的21个可能方面中的19个方面有显着的突变效应,这与先前在黑腹果蝇中鉴定出的翼形的站立遗传变异的高维度一致。变异具有部分隐性效应,与0.25左右的平均优势一致。性别特异性基质相对相似,尽管男性特异性基质稍大,这是由于X染色体上的剂量补偿所预期的。基因型特定的矩阵有很大的不同。矩阵可能会有所不同,这既是因为基于具有大表型效应的突变的小样本导致的抽样误差,也由于基因型的突变特性。由于两种基因型具有不同的分子突变率和特性,因此可能涉及基因型差异。

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