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关于混合交配植物竞争能力的近亲繁殖衰退及其种群水平后果的实验证据。

Experimental evidence of inbreeding depression for competitive ability and its population-level consequences in a mixed-mating plant.

作者信息

Walker Mark J, Spigler Rachel B

机构信息

Department of Biology, Temple University, Philadelphia, PA, United States.

出版信息

Front Plant Sci. 2024 Sep 17;15:1398060. doi: 10.3389/fpls.2024.1398060. eCollection 2024.

Abstract

Inbreeding depression is a key factor regulating the evolution of self-fertilization in plants. Despite predictions that inbreeding depression should evolve with selfing rates as deleterious alleles are increasingly exposed and removed by selection, evidence of purging the genetic load in wild populations is equivocal at best. This discordance could be explained, in part, if the load underlying inbreeding depression is subject to soft selection, i.e., the fitness of selfed individuals depends on the frequency and density of selfed vs. outcrossed individuals in the population. Somewhat counterintuitively, this means that populations with contrasting mutation load can have similar fitness. Soft selection against selfed individuals may be expected when there is inbreeding depression for competitive ability in density-regulated populations. We tested population-level predictions of inbreeding depression in competitive ability by creating a density series of potted plants consisting of either purely outcrossed, purely selfed, or mixed (50% outcrossed, 50% selfed) seed of the mixed-mating biennial (Gentianaceae) representing ecological neighborhoods. Focusing on the growth and survival of juveniles, we show that mean plant size is independent of neighborhood composition when resources are limiting, but greatest in outcrossed neighborhoods at low densities. Across a range of densities, this manifests as stronger density-dependence in outcrossed populations compared to selfed or mixed ones. We also found significantly greater size inequalities among individuals in mixed neighborhoods, even at high densities where mean juvenile size converged, a key signature of asymmetric competition between outcrossed and selfed individuals. Our work illustrates how soft selection could shelter the genetic load underlying inbreeding depression and its demographic consequences.

摘要

近亲繁殖衰退是调节植物自花受精进化的关键因素。尽管有预测称,随着有害等位基因因选择作用而越来越多地暴露和清除,近亲繁殖衰退应会随着自交率的变化而进化,但在野生种群中清除遗传负荷的证据充其量也是模棱两可的。如果近亲繁殖衰退背后的负荷受到软选择,即自交个体的适合度取决于种群中自交个体与异交个体的频率和密度,那么这种不一致在一定程度上是可以解释的。有点违反直觉的是,这意味着具有不同突变负荷的种群可能具有相似的适合度。当密度调节种群中竞争能力存在近亲繁殖衰退时,预计会对自交个体进行软选择。我们通过创建一系列盆栽植物密度实验来测试竞争能力方面近亲繁殖衰退的种群水平预测,这些盆栽植物由混合交配的两年生植物(龙胆科)的纯异交种子、纯自交种子或混合种子(50%异交,50%自交)组成,代表生态邻域。关注幼苗的生长和存活情况,我们发现当资源有限时,平均植株大小与邻域组成无关,但在低密度下异交邻域中平均植株大小最大。在一系列密度范围内,这表现为与自交或混合种群相比,异交种群中密度依赖性更强。我们还发现,即使在平均幼苗大小趋同的高密度情况下,混合邻域中个体间的大小不平等也显著更大,这是异交个体和自交个体之间不对称竞争的关键特征。我们的研究说明了软选择如何能够庇护近亲繁殖衰退背后的遗传负荷及其人口统计学后果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ebd3/11442323/1eeaf3212762/fpls-15-1398060-g001.jpg

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