高温胁迫下的兼性一妻多夫制以及气候驱动的交配系统变化的进化潜力。

IF 3.9 2区 生物学 Q2 ECOLOGY
Matilda Q R Pembury Smith, Laura Latkova, Rhonda R Snook
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引用次数: 0

摘要

交配互动的生态学决定了一个物种的交配系统,但环境变化是否会改变一个物种的交配系统尚不清楚。气温升高会导致雄性不育,促使雌性为了保证生育能力而迁徙。在单雄系统中,由于雌性可能只与不育的雄性交配,热诱导的雄性不育造成了重大的灭绝风险。一个关键的问题是,在一个典型的一夫一妻制体系中,男性不育是否会导致一妻多夫制。在这里,我们通过研究男性对热应激和兼性多夫制的生育弹性的遗传变异来解决这个问题,并评估每种交配系统的适应性后果。我们使用单雄性果蝇亚bobscura的同雌性系,将雄性暴露在发育性热应激中。雄性热应激导致不育,雌性与这些雄性交配后通常会留下。虽然在中高温条件下,雄性的生育敏感性和雌性的生殖力出现了显著的遗传变异,但我们发现一妻多夫制的可塑性几乎没有遗传变异。这些结果表明了这两种性状的进化潜力,但交配系统的转变可能是通过选择与多夫制相关的基因而不是可塑性而产生的。一妻多夫制在最初与不育雄性交配后提高了后代的产量,但并没有完全恢复生育能力,与有生育能力的一妻多夫交配增加了雌性的死亡率。热应激也会改变交配行为,从而影响雌性的择偶。总之,这些发现表明,温度升高可能会影响物种的交配系统,以及气候变化下热生态与性选择之间的相互作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Facultative polyandry under heat stress and the evolutionary potential for climate-driven shifts in mating systems.

The ecology of mating interactions determines a species' mating system, yet whether environmental change can alter the mating system of a species remains unclear. Elevated temperatures can cause male sterility, prompting females to remate for fertility assurance. In monandrous systems, heat-induced male infertility poses a significant extinction risk, as females may mate exclusively with infertile males. A key question is whether male sterility could drive polyandry in a typically monandrous system. Here we address this by examining genetic variance underlying both male fertility resilience to heat stress and facultative polyandry, and assessing the fitness consequences of each mating system. We used isofemales lines of Drosophila subobscura, a monandrous species, exposing males to developmental heat stress. Male heat stress generated sterility and females mated to these males typically remated. While significant genetic variation in male fertility sensitivity and female remating emerged at moderate to high temperatures, we found little genetic variation in plasticity for polyandry. These results indicate evolutionary potential in both traits, but that a shift in mating system would arise through selection on genes associated with polyandry, rather than plasticity. Polyandry improved offspring production after initially mating to a sterile male, but did not fully restore reproductive output relative to fertile monandrous pairs, and mating with heat-stressed males increased female mortality. Heat stress also altered mating behaviour which could impact female mate choice. Together, these findings show that increasing temperatures may shape species' mating systems and the interplay between thermal ecology and sexual selection under climate change.

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来源期刊
Heredity
Heredity 生物-进化生物学
CiteScore
7.50
自引率
2.60%
发文量
84
审稿时长
4-8 weeks
期刊介绍: Heredity is the official journal of the Genetics Society. It covers a broad range of topics within the field of genetics and therefore papers must address conceptual or applied issues of interest to the journal''s wide readership
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