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UNDERSTANDING THE EVOLUTION AND STABILITY OF THE G-MATRIX

机译:了解G-矩阵的演变和稳定性

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摘要

The G-matrix summarizes the inheritance of multiple, phenotypic traits. The stability and evolution of this matrix are important issues because they affect our ability to predict how the phenotypic traits evolve by selection and drift. Despite the centrality of these issues, comparative, experimental, and analytical approaches to understanding the stability and evolution of the G-matrix have met with limited success. Nevertheless, empirical studies often find that certain structural features of the matrix are remarkably constant, suggesting that persistent selection regimes or other factors promote stability. On the theoretical side, no one has been able to derive equations that would relate stability of the G-matrix to selection regimes, population size, migration, or to the details of genetic architecture. Recent simulation studies of evolving G-matrices offer solutions to some of these problems, as well as a deeper, synthetic understanding of both the G-matrix and adaptive radiations.
机译:G-矩阵总结了多个表型性状的遗传。该基质的稳定性和进化是重要的问题,因为它们影响我们预测通过选择和漂移表型性状如何进化的能力。尽管这些问题非常重要,但是用于理解G矩阵的稳定性和进化的比较,实验和分析方法都取得了有限的成功。然而,经验研究经常发现,矩阵的某些结构特征非常恒定,这表明持久的选择机制或其他因素可以促进稳定性。从理论上讲,没有人能够得出将G矩阵的稳定性与选择制度,种群规模,迁徙或遗传结构细节相关的方程式。最近对演化的G矩阵进行的仿真研究为这些问题中的某些问题提供了解决方案,并且对G矩阵和自适应辐射都有更深入的综合理解。

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