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论物种的易逝性:杂交种群中遗传不相容性的崩溃。

On the impermanence of species: The collapse of genetic incompatibilities in hybridizing populations.

机构信息

Department of Organismic and Evolutionary Biology, Harvard University, Cambridge, MA, 02138, USA.

出版信息

Evolution. 2022 Nov;76(11):2498-2512. doi: 10.1111/evo.14626. Epub 2022 Oct 1.

Abstract

Species pairs often become genetically incompatible during divergence, which is an important source of reproductive isolation. An idealized picture is often painted where incompatibility alleles accumulate and fix between diverging species. However, recent studies have shown both that incompatibilities can collapse with ongoing hybridization, and that incompatibility loci can be polymorphic within species. This paper suggests some general rules for the behavior of incompatibilities under hybridization. In particular, we argue that redundancy of genetic pathways can strongly affect the dynamics of intrinsic incompatibilities. Since fitness in genetically redundant systems is unaffected by introducing a few foreign alleles, higher redundancy decreases the stability of incompatibilities during hybridization, but also increases tolerance of incompatibility polymorphism within species. We use simulations and theories to show that this principle leads to two types of collapse: in redundant systems, exemplified by classical Dobzhansky-Muller incompatibilities, collapse is continuous and approaches a quasi-neutral polymorphism between broadly sympatric species, often as a result of isolation-by-distance. In nonredundant systems, exemplified by co-evolution among genetic elements, incompatibilities are often stable, but can collapse abruptly with spatial traveling waves. As both types are common, the proposed principle may be useful in understanding the abundance of genetic incompatibilities in natural populations.

摘要

物种对在分化过程中经常变得基因不相容,这是生殖隔离的一个重要来源。人们通常设想一个理想化的图景,即不相容等位基因在分化的物种之间积累并固定。然而,最近的研究表明,不相容性既可以随着杂交的继续而崩溃,也可以在物种内部保持多态性。本文提出了一些在杂交条件下不相容性行为的一般规律。特别是,我们认为遗传途径的冗余可以强烈影响内在不相容性的动态。由于在遗传冗余系统中,引入少数外来等位基因不会影响适应性,因此更高的冗余性会降低杂交过程中不相容性的稳定性,但也会增加物种内不相容性多态性的容忍度。我们使用模拟和理论表明,这一原则导致了两种类型的崩溃:在冗余系统中,以经典的 Dobzhansky-Muller 不相容性为例,崩溃是连续的,并在广泛同域的物种之间接近准中性多态性,通常是由于隔离距离引起的。在非冗余系统中,以遗传元件之间的共同进化为例,不相容性通常是稳定的,但可以随着空间传播波突然崩溃。由于这两种情况都很常见,因此所提出的原则可能有助于理解自然种群中遗传不相容性的丰富性。

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