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Repeated evolution and reversibility of self-fertilization in the volvocine green algae

机译:卷发绿藻中自施的重复演化与可逆性

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Outcrossing and self-fertilization are fundamental strategies of sexual reproduction, each with different evolutionary costs and benefits. Self-fertilization is thought to be an evolutionary “dead-end” strategy, beneficial in the short term but costly in the long term, resulting in self-fertilizing species that occupy only the tips of phylogenetic trees. Here, we use volvocine green algae to investigate the evolution of self-fertilization. We use ancestral-state reconstructions to show that self-fertilization has repeatedly evolved from outcrossing ancestors and that multiple reversals from selfing to outcrossing have occurred.We use three phylogenetic metrics to show that self-fertilization is not restricted to the tips of the phylogenetic tree, a finding inconsistent with the view of self-fertilization as a dead-end strategy. We also find no evidence for higher extinction rates or lower speciation rates in selfing lineages. We find that self-fertilizing species have significantly larger colonies than outcrossing species, suggesting the benefits of selfing may counteract the costs of increased size.We speculate that our macroevolutionary results on self-fertilization (i.e., non-tippy distribution, no decreased diversification rates) may be explained by the haploid-dominant life cycle that occurs in volvocine algae, which may alter the costs and benefits of selfing.
机译:交叉和自我施肥是性繁殖的基本策略,每个都具有不同的进化成本和福利。自我施肥被认为是进化的“死区”策略,在短期内有益,但长期昂贵,导致自我施肥物种,只占据系统发育树的提示。在这里,我们使用volvocine绿藻来调查自我施肥的演变。我们使用祖先的重建来表明,自我施肥已经从突出的祖先反复演变,并且已经发生了许多逆转。我们使用了三个系统发育度量来表明自我施肥不限于系统发育树的尖端,一个与自我施肥视为死区战略的发现不一致。我们还没有发现自行式谱系中较高的灭绝率或更低的物质率。我们发现自我施肥物种具有比外交出的殖民物种显着更大,这表明自我的益处可能会抵消增加的规模的成本。我们推测我们的宏观调度结果对自我施肥(即非倾斜分配,无数的多样化率降低)可以通过在葡萄孢菌藻类中发生的单倍体显性生命周期来解释,这可能会改变自行的成本和益处。

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