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NICHE DIMENSIONALITY AND THE GENETICS OF ECOLOGICAL SPECIATION

机译:生态位维度与生态学特征的遗传学

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Niche dimensionality is suggested to be a key determinant of ecological speciation ("multifarious selection" hypothesis), but genetic aspects of this process have not been investigated theoretically. We use Fisher's geometrical model to study how niche dimensionality influences the mean fitness of hybrids formed upon secondary contact between populations adapting in allopatry. Gaussian selection for an optimum generates two forms of reproductive isolation (RI): an extrinsic component due to maladaptation of the mean phenotype, and an intrinsic variance load resulting from what we term transgressive incompatibilities between mutations fixed in different populations. We show that after adaptation to a new environment, RI increases with (1) the mean initial maladaptation of diverging population, and (2) niche dimensionality, which increases the phenotypic variability of fixed mutations. Under mutation selection drift equilibrium in a constant environment, RI accumulates steadily with time, at a rate that also increases with niche dimensionality. A similar pattern can be produced by successive shifts in the optimum phenotype. Niche dimensionality thus has an effect per se on postzygotic isolation, beyond putative indirect effects (stronger selection, more genes). Our mechanism is consistent with empirical evidence about transgressive segregation in crosses between divergent populations, and with patterns of accumulation of RI with time in many taxa.
机译:生态位的维数被认为是生态物种形成的关键决定因素(“多种选择”假设),但是这一过程的遗传方面尚未在理论上进行过研究。我们使用Fisher的几何模型研究利基维数如何影响适应异象种群的种群之间的二次接触而形成的杂种的平均适应度。最优选择的高斯选择会产生两种形式的生殖隔离(RI):由于平均表型的适应不良而导致的外在成分,以及因我们称之为固定在不同种群中的突变之间的越界不相容性而导致的内在方差负载。我们表明,适应新环境后,RI随(1)离散群体的平均初始适应不良而增加,(2)利基维数,从而增加了固定突变的表型变异性。在恒定环境中的突变选择漂移平衡下,RI随时间稳定积累,其速率也随利基维数的增加而增加。通过最佳表型的连续移位可以产生相似的模式。因此,利基维数本身对合子后分离具有影响,超出了推定的间接影响(选择更强,基因更多)。我们的机制与关于不同种群之间的杂交中海侵分离的经验证据相一致,并且与许多类群中RI随时间的积累模式一致。

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