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选择在混合交配系统中的花粉竞争能力。

Selection for pollen competitive ability in mixed-mating systems.

机构信息

Department of Ecology and Evolutionary Biology, University of Toronto, 25 Willcocks Street, Toronto, ON M5S 3B2, Canada.

Koffler Scientific Reserve at Jokers Hill, University of Toronto, 17000 Dufferin Street, King City, ON L7B 1K5, Canada.

出版信息

Evolution. 2018 Nov;72(11):2513-2536. doi: 10.1111/evo.13597. Epub 2018 Sep 27.

Abstract

Coexpression of genes in plant sporophytes and gametophytes allows correlated gametic and sporophytic selection. Theory predicts that, under outcrossing, an allele conferring greater pollen competitive ability should fix within a population unless antagonistic pleiotropy with the sporophyte stage is strong. However, under strong selfing, pollen competitiveness is immaterial as superior and inferior competitors are deposited on opposite stigmas, producing assortative competition. Because many plant species have mixed-mating systems, selfing should be critical in the spread and maintenance of pollen-expressed genes affecting competitiveness. We present two one-locus, two-allele population genetic models for the evolution of a locus controlling pleiotropic antagonism between pollen competitiveness and diploid fitness. Analytical solutions provide minimum and maximum selfing rates allowing invasion of alleles with greater diploid and haploid fitness, respectively. Further, polymorphism is only maintained when diploid selection is recessive. Fixation of the allele conferring greater pollen competitiveness may be prevented, even with weak sporophytic counterselection, with sufficiently high selfing. Finally, selfing expands and limits the range of haploid-diploid selection coefficients allowing polymorphism, depending on dominance and selfing mode.

摘要

植物孢子体和配子体中基因的共表达使得配子体和孢子体选择相关。理论预测,在异交条件下,赋予花粉竞争能力更强的等位基因应该在种群中固定下来,除非与孢子体阶段的拮抗多效性很强。然而,在强自交条件下,花粉竞争力变得无关紧要,因为优越和劣势的竞争者被沉积在相对的柱头,产生了趋同竞争。由于许多植物物种具有混合交配系统,自交应该在传播和维持影响竞争力的花粉表达基因方面发挥关键作用。我们提出了两个单基因座、两个等位基因的群体遗传模型,用于研究控制花粉竞争力和二倍体适合度之间多效拮抗的基因座的进化。分析解提供了允许具有更高二倍体和单倍体适合度的等位基因入侵的最小和最大自交率。此外,只有当二倍体选择是隐性时,多态性才能维持。即使有较弱的孢子体反选择,高自交率也可能阻止赋予花粉竞争力更强的等位基因的固定。最后,自交扩大并限制了允许多态性的单倍体-二倍体选择系数的范围,这取决于显性和自交模式。

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