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Heritability is not Evolvability

机译:遗传性不是进化性

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Short-term evolutionary potential depends on the additive genetic variance in the population. The additive variance is often measured as heritability, the fraction of the total phenotypic variance that is additive. Heritability is thus a common measure of evolutionary potential. An alternative is to measure evolutionary potential as expected proportional change under a unit strength of selection. This yields the mean-scaled additive variance as a measure of evolvability. Houle in Genetics 130:195–204, (1992) showed that these two ways of scaling additive variance are often inconsistent and can lead to different conclusions as to what traits are more evolvable. Here, we explore this relation in more detail through a literature review, and through theoretical arguments. We show that the correlation between heritability and evolvability is essentially zero, and we argue that this is likely due to inherent positive correlations between the additive variance and other components of phenotypic variance. This means that heritabilities are unsuitable as measures of evolutionary potential in natural populations. More generally we argue that scaling always involves non-trivial assumptions, and that a lack of awareness of these assumptions constitutes a systemic error in the field of evolutionary biology.
机译:短期进化潜能取决于种群中加性遗传变异。加性方差通常用遗传度来衡量,即可加性在总表型方差中所占的比例。因此,遗传力是进化潜能的常用量度。另一种方法是在选择的单位强度下,按预期比例变化来衡量进化潜力。这产生了平均规模的加性方差,作为可进化性的度量。 Houle in Genetics 130:195–204,(1992)表明,这两种缩放加性方差的方法通常是不一致的,并且可以就哪些性状更易进化得出不同的结论。在这里,我们通过文献综述和理论论证来更详细地探讨这种关系。我们表明遗传力和可进化性之间的相关性基本上为零,并且我们认为这可能是由于加性方差与表型方差的其他成分之间固有的正相关性。这意味着遗传力不适合作为自然种群进化潜力的量度。更普遍地说,我们认为标度总是涉及非平凡的假设,而对这些假设的认识不足则构成了进化生物学领域的系统性错误。

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