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性选择、繁殖力选择和生存力选择对两性异形植物花大小和数量的影响。

Sexual, fecundity, and viability selection on flower size and number in a sexually dimorphic plant.

机构信息

Department of Biology, Indiana University, Bloomington, IN 47405, USA.

出版信息

Evolution. 2012 Apr;66(4):1154-66. doi: 10.1111/j.1558-5646.2011.01510.x. Epub 2011 Dec 6.

Abstract

The evolution of sexual dimorphism will depend on how sexual, fecundity and viability selection act within each sex, with the different forms of selection potentially operating in opposing directions. We examined selection in the dioecious plant Silene latifolia using planted arrays of selection lines that differed in flower size (small vs. large). In this species, a flower size/number trade-off exists within each sex, and males produce smaller and more numerous flowers than females. Moreover, floral traits are genetically correlated with leaf physiology. Sexual selection favoring males in the small-flower line occurred via greater overlap in the timing of flower output between males from this line and females. Fecundity selection favored males with high flower production, as siring success was proportionate to pollen production. Viability selection opposed sexual selection, favoring males from the large-flower line. In females, fecundity and viability selection operated in the same direction, favoring those from the large-flower line via greater seed production and survival. These results concur with the pattern of floral sexual dimorphism. Together with previous results they suggest that the outcome of the different forms of selection will be environmentally dependent, and therefore help to explain variation among populations in sexually dimorphic traits.

摘要

性二型的进化将取决于性选择、繁殖力选择和生存力选择在每一性别中的作用方式,不同形式的选择可能朝着相反的方向起作用。我们使用大小不同的花(小 vs. 大)的选择系种植阵列来检验雌雄异株植物长距紫堇的选择。在这个物种中,每一种性别都存在花大小/数量的权衡,雄性产生的花比雌性小而多。此外,花的性状与叶片的生理学密切相关。在小花系中有利于雄性的性选择是通过增加该系雄性与雌性之间的花输出时间重叠来实现的。繁殖力选择有利于具有高花产量的雄性,因为父亲的成功率与花粉产量成正比。生存力选择与性选择相反,有利于来自大花系的雄性。在雌性中,繁殖力和生存力选择朝着相同的方向起作用,通过增加大花系的种子产量和存活率来有利于该系。这些结果与花的性二型模式一致。结合以前的结果,它们表明不同形式选择的结果将取决于环境,因此有助于解释在性二型特征方面种群之间的变异。

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