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The phenotypic variance within plastic traits under migration-mutation-selection balance

机译:迁移-突变-选择平衡下塑性性状的表型变异

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How phenotypic variances of quantitative traits are influenced by the heterogeneity in environment is an important problem in evolutionary biology. In this study, both genetic and environmental variances in a plastic trait under migration-mutation-stabilizing selection are investigated. For this, a linear reaction norm is used to approximate the mapping from genotype to phenotype, and a population of clonal inheritance is assumed to live in a habitat consisting of many patches in which environmental conditions vary among patches and generations. The life cycle is assumed to be selection-reproduction-mutation-migration. Analysis shows that phenotypic plasticity is adaptive if correlations between the optimal phenotype and environment have become established in both space and/or time, and it is thus possible to maintain environmental variance (V-E) in the plastic trait. Under the special situation of no mutation but maximum migration such that separate patches form an effective single-site habitat, the genotype that maximizes the geometric mean fitness will come to fixation and thus genetic variance (V-G) cannot be maintained. With mutation and/or restricted migration, VG can be maintained and it increases with mutation rate but decreases with migration rate; whereas VE is little affected by them. Temporal variation in environmental quality increases VG while its spatial variance decreases VG. Variation in environmental conditions may decrease the environmental variance in the plastic trait.
机译:数量性状的表型变异如何受到环境异质性的影响是进化生物学中的一个重要问题。在这项研究中,研究了在迁移突变稳定选择下塑性性状的遗传和环境变异。为此,使用线性反应范数来近似从基因型到表型的映射,并且假定克隆遗传种群生活在由许多斑块组成的栖息地中,其中环境条件在斑块和世代之间变化。假定生命周期为选择-复制-突变-迁移。分析表明,如果在空间和/或时间上都已经建立了最佳表型和环境之间的相关性,那么表型可塑性是适应性的,因此可以在可塑性状中维持环境差异(V-E)。在没有突变但有最大迁移的特殊情况下,例如单独的斑块形成有效的单点栖息地,将最大化几何平均适应度的基因型将被固定,因此无法保持遗传变异(V-G)。通过突变和/或受限的迁移,可以维持VG,并且其随突变率增加而随着迁移率降低;而VE受它们影响很小。环境质量的时间变化会增加VG,而其空间变化会降低VG。环境条件的变化可能会减少可塑性状的环境变化。

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