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Both morph- and species-dependent asymmetries affect reproductive barriers between heterostylous species

机译:依赖形态和物种的不对称都会影响异型物种之间的繁殖障碍

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Abstract The interaction between floral traits and reproductive isolation is crucial to explaining the extraordinary diversity of angiosperms. Heterostyly, a complex floral polymorphism that optimizes outcrossing, evolved repeatedly and has been shown to accelerate diversification in primroses, yet its potential influence on isolating mechanisms remains unexplored. Furthermore, the relative contribution of pre- versus postmating barriers to reproductive isolation is still debated. No experimental study has yet evaluated the possible effects of heterostyly on pre- and postmating reproductive mechanisms. We quantify multiple reproductive barriers between the heterostylous Primula elatior (oxlip) and P. vulgaris (primrose), which readily hybridize when co-occurring, and test whether traits of heterostyly contribute to reproductive barriers in unique ways. We find that premating isolation is key for both species, while postmating isolation is considerable only for P. vulgaris ; ecogeographic isolation is crucial for both species, while phenological, seed developmental, and hybrid sterility barriers are also important in P. vulgaris , implicating sympatrically higher gene flow into P. elatior . We document for the first time that, in addition to the aforementioned species-dependent asymmetries, morph-dependent asymmetries affect reproductive barriers between heterostylous species. Indeed, the interspecific decrease of reciprocity between high sexual organs of complementary floral morphs limits interspecific pollen transfer from anthers of short-styled flowers to stigmas of long-styled flowers, while higher reciprocity between low sexual organs favors introgression over isolation from anthers of long-styled flowers to stigmas of short-styled flowers. Finally, intramorph incompatibility persists across species boundaries, but is weakened in long-styled flowers of P. elatior , opening a possible backdoor to gene flow through intramorph pollen transfer between species. Therefore, patterns of gene flow across species boundaries are likely affected by floral morph composition of adjacent populations. To summarize, our study highlights the general importance of premating isolation and newly illustrates that both morph- and species-dependent asymmetries shape boundaries between heterostylous species.
机译:摘要花卉性状与生殖隔离之间的相互作用对于解释被子植物的非凡多样性至关重要。异源地,一种复杂的花型多态性,可以优化异型杂交,反复进化,并已显示出可以加速报春花的多样化,但尚未探讨其对分离机制的潜在影响。此外,关于隔离之前和之后障碍对生殖隔离的相对贡献仍然存在争议。尚无任何实验研究评估异麦芽酮对产前和产后生殖机制的可能影响。我们量化了在异质的报春花报春花(牛油)和寻常型P.报春花(报春花)之间的多重繁殖障碍,它们在同时出现时很容易杂交,并测试异质性状是否以独特的方式促成生殖障碍。我们发现,过早隔离对于这两个物种都是关键的,而过早隔离仅对寻常型假单胞菌而言是可观的。生态地理隔离对于这两个物种都是至关重要的,而物候,​​种子发育和杂种不育障碍在寻常型体育中也很重要,这暗示着较高的基因流向东方型体育。我们首次证明,除了上述依赖于物种的不对称性外,依赖于形态的不对称性还影响了异质性物种之间的繁殖障碍。的确,互补性花型高性器官之间的种间互易性降低限制了花粉从短花型花药到长型花柱头的种间花粉转移,而低性器官之间的互易性则比从长型花药的隔离更有利于基因渗入。风格的花到短花的柱头。最后,形态内的不相容性在物种边界上持续存在,但在长形的P. elatior花中被削弱,从而为通过物种间的形态内花粉转移的基因流打开了可能的后门。因此,跨物种边界的基因流动模式可能会受到邻近种群的花形形态组成的影响。总而言之,我们的研究突出了提前隔离的普遍重要性,并新近说明了形态依赖和物种依赖的不对称都影响了异质物种之间的边界。

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