Barton Nicholas H, de Cara Maria Angeles Rodriguez
Institute of Science and Technology, Am Campus 1, Klosterneuburg A-3400, Austria.
Evolution. 2009 May;63(5):1171-90. doi: 10.1111/j.1558-5646.2009.00622.x. Epub 2009 Jan 14.
Felsenstein distinguished two ways by which selection can directly strengthen isolation. First, a modifier that strengthens prezygotic isolation can be favored everywhere. This fits with the traditional view of reinforcement as an adaptation to reduce deleterious hybridization by strengthening assortative mating. Second, selection can favor association between different incompatibilities, despite recombination. We generalize this "two allele" model to follow associations among any number of incompatibilities, which may include both assortment and hybrid inviability. Our key argument is that this process, of coupling between incompatibilities, may be quite different from the usual view of reinforcement: strong isolation can evolve through the coupling of any kind of incompatibility, whether prezygotic or postzygotic. Single locus incompatibilities become coupled because associations between them increase the variance in compatibility, which in turn increases mean fitness if there is positive epistasis. Multiple incompatibilities, each maintained by epistasis, can become coupled in the same way. In contrast, a single-locus incompatibility can become coupled with loci that reduce the viability of haploid hybrids because this reduces harmful recombination. We obtain simple approximations for the limits of tight linkage, and strong assortment, and show how assortment alleles can invade through associations with other components of reproductive isolation.
费尔森斯坦区分了选择能够直接强化隔离的两种方式。第一,强化合子前隔离的修饰基因在任何地方都可能受到青睐。这与强化的传统观点相符,即强化是一种通过加强选型交配来减少有害杂交的适应方式。第二,尽管存在重组,选择仍可能有利于不同不相容性之间的关联。我们将这个“双等位基因”模型进行推广,以追踪任意数量不相容性之间的关联,这些不相容性可能包括选型和杂种 inviability。我们的关键论点是,这种不相容性之间的耦合过程可能与强化的通常观点大不相同:强大的隔离可以通过任何类型的不相容性的耦合而进化,无论是合子前还是合子后。单基因座不相容性会耦合在一起,因为它们之间的关联增加了兼容性的方差,如果存在正向上位性,这反过来又会增加平均适合度。多个由上位性维持的不相容性可以以相同的方式耦合在一起。相比之下,单基因座不相容性可以与降低单倍体杂种活力的基因座耦合在一起,因为这会减少有害重组。我们得到了紧密连锁极限和强选型的简单近似值,并展示了选型等位基因如何通过与生殖隔离的其他成分的关联而入侵。