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基因组间的性冲突驱动收获蚁的对抗性协同进化。

Inter-genomic sexual conflict drives antagonistic coevolution in harvester ants.

作者信息

Herrmann Michael, Cahan Sara Helms

机构信息

Department of Biology, University of Vermont, Burlington, VT 05405, USA

Department of Biology, University of Vermont, Burlington, VT 05405, USA.

出版信息

Proc Biol Sci. 2014 Dec 22;281(1797). doi: 10.1098/rspb.2014.1771.

Abstract

The reproductive interests of males and females are not always aligned, leading to sexual conflict over parental investment, rate of reproduction and mate choice. Traits that increase the genetic interests of one sex often occur at the expense of the other, selecting for counter-adaptations leading to antagonistic coevolution. Reproductive conflict is not limited to intraspecific interactions; interspecific hybridization can produce pronounced sexual conflict between males and females of different species, but it is unclear whether such conflict can drive sexually antagonistic coevolution between reproductively isolated genomes. We tested for hybridization-driven sexually antagonistic adaptations in queens and males of the socially hybridogenetic 'J' lineages of Pogonomyrmex harvester ants, whose mating system promotes hybridization in queens but selects against it in males. We conducted no-choice mating assays to compare patterns of mating behaviour and sperm transfer between inter- and intra-lineage pairings. There was no evidence for mate discrimination on the basis of pair type, and the total quantity of sperm transferred did not differ between intra- and inter-lineage pairs; however, further dissection of the sperm transfer process into distinct mechanistic components revealed significant, and opposing, cryptic manipulation of copulatory investment by both sexes. Males of both lineages increased their rate of sperm transfer to high-fitness intra-lineage mates, with a stronger response in the rarer lineage for whom mating mistakes are the most likely. By contrast, the total duration of copulation for intra-lineage mating pairs was significantly shorter than for inter-lineage crosses, suggesting that queens respond to prevent excessive sperm loading by prematurely terminating copulation. These findings demonstrate that sexual conflict can lead to antagonistic coevolution in both intra-genomic and inter-genomic contexts. Indeed, the resolution of sexual conflict may be a key determinant of the long-term evolutionary potential of host-dependent reproductive strategies, counteracting the inherent instabilities arising from such systems.

摘要

雄性和雌性的生殖利益并不总是一致的,这导致了在亲代投资、繁殖率和配偶选择方面的性冲突。增加某一性别的遗传利益的性状往往是以牺牲另一性别为代价而出现的,从而选择了反适应,导致对抗性协同进化。生殖冲突不仅限于种内相互作用;种间杂交会在不同物种的雄性和雌性之间产生明显的性冲突,但尚不清楚这种冲突是否会驱动生殖隔离基因组之间的性对抗协同进化。我们对收获蚁属的社会杂交起源的“J”谱系的蚁后和雄蚁进行了杂交驱动的性对抗适应性测试,其交配系统促进蚁后杂交,但在雄蚁中则选择反对杂交。我们进行了无选择交配试验,以比较谱系间和谱系内配对之间的交配行为模式和精子转移情况。没有证据表明基于配对类型的配偶歧视,并且谱系内和谱系间配对之间转移的精子总量没有差异;然而,将精子转移过程进一步细分为不同的机制成分后发现,两性对交配投入存在显著且相反的隐秘操纵。两个谱系的雄蚁都提高了向高适应性谱系内配偶的精子转移率,在较罕见的谱系中反应更强,因为它们最容易出现交配错误。相比之下,谱系内交配配对的总交配持续时间明显短于谱系间杂交配对,这表明蚁后通过过早终止交配来做出反应,以防止精子过度负载。这些发现表明,性冲突可以在基因组内和基因组间的背景下导致对抗性协同进化。事实上,性冲突的解决可能是宿主依赖生殖策略长期进化潜力的关键决定因素,抵消了此类系统固有的不稳定性。

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