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在严重偏向雄性的成年性别比例下导致种群减少的机制。

Mechanisms that can cause population decline under heavily skewed male-biased adult sex ratios.

机构信息

Graduate School of Ocean and Fisheries Sciences, Tokyo University of Agriculture, Abashiri, Japan.

Department of Ocean and Fisheries Sciences, Tokyo University of Agriculture, Abashiri, Japan.

出版信息

J Anim Ecol. 2023 Sep;92(9):1893-1903. doi: 10.1111/1365-2656.13980. Epub 2023 Jul 11.

Abstract

While adult sex ratio (ASR) is a crucial component for population management, there is still a limited understanding of how its fluctuation affects population dynamics. To demonstrate mechanisms that hinder population growth under a biased ASR, we examined changes in reproductive success with ASR using a decapod crustacean exposed to female-selective harvesting. We examined the effect of ASR on the spawning success of females. A laboratory experiment showed that the number of eggs carried by females decreased as the proportion of males in the mating groups increased. Although the same result was not observed in data collected over 25 years in the wild, the negative effect of ASR was suggested when success in carrying eggs was considered as a spawning success. These results indicate that a surplus of males results in females failing to carry eggs, probably due to sexual coercion, and the negative effect of ASR can be detected at the population level only when the bias increases because failure in spawning success occurs in part of population. We experimentally examined how male-biased sex ratios affected the maintenance of genetic diversity in a population. The diversity of paternity in a clutch increased with the number of candidate fathers. However, over 50% of a clutch was fertilised by a single male regardless of the sex ratio, and the degree of diversity was less than half of the highest diversity expected in each mating group. We also experimentally examined the mating ability of males during the breeding season. The experiment showed that multiple mating by males could not compensate for the risk that their genotypes would be lost when multiple males competed for one female. These results suggest that a male-biased ASR could trigger a decline of genetic diversity in a population. We show that ASR skewed by female-selective harvesting decreases reproductive success not only of males that have few mating opportunities but also of females. We discuss that we may still underestimate the significance of ASR on population persistence due to the difficulty of revealing the effect of ASR.

摘要

尽管成年性别比例 (ASR) 是人口管理的关键组成部分,但对于其波动如何影响人口动态,人们的理解仍然有限。为了展示在偏向 ASR 下阻碍种群增长的机制,我们使用一种经历雌性选择捕捞的十足目甲壳动物来研究 ASR 对繁殖成功的影响。我们研究了 ASR 对雌性产卵成功的影响。实验室实验表明,随着交配群体中雄性比例的增加,雌性携带的卵子数量减少。尽管在野外 25 年的数据收集过程中没有观察到相同的结果,但当将携带卵子的成功视为产卵成功时,ASR 的负面影响被暗示。这些结果表明,雄性过剩会导致雌性无法携带卵子,可能是由于性胁迫,只有当 ASR 的偏差增加导致部分种群产卵失败时,才能在种群水平上检测到 ASR 的负面影响。我们通过实验研究了雄性偏向的性别比例如何影响种群中遗传多样性的维持。卵盘中亲代的多样性随着候选父亲数量的增加而增加。然而,无论性别比例如何,超过 50%的卵盘由单个雄性受精,而且多样性程度不到每个交配组中预期的最高多样性的一半。我们还在繁殖季节通过实验研究了雄性的交配能力。实验表明,雄性多次交配并不能弥补当多个雄性竞争一个雌性时其基因型可能丢失的风险。这些结果表明,雄性偏向的 ASR 可能会引发种群遗传多样性的下降。我们表明,雌性选择捕捞导致的 ASR 偏斜不仅降低了雄性的繁殖成功率,也降低了雌性的繁殖成功率。我们讨论了由于难以揭示 ASR 的影响,我们可能仍然低估了 ASR 对种群持续存在的重要性。

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