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温度会影响……中的同种和异种交配率。 (原句中“in”后面缺少具体内容)

Temperature affects conspecific and heterospecific mating rates in .

作者信息

Rader Jonathan A, Matute Daniel R

机构信息

Dept. of Biology, University of North Carolina at Chapel Hill, Chapel Hill, NC, USA.

出版信息

bioRxiv. 2024 Oct 28:2024.10.28.620639. doi: 10.1101/2024.10.28.620639.

Abstract

Behavioral mating choices and mating success are important factors in the development of reproductive isolation during speciation. Environmental conditions, especially temperature, can affect these key traits. Environmental conditions can vary across, and frequently delimit species' geographic ranges. Pairing suboptimal conditions with relative rarity of conspecifics at range margins may set the stage for hybridization. Despite the importance of mating behaviors as a reproductive barrier, a general understanding of the interaction between behavioral choices and the environment is lacking, in part because systematic studies are rare. With this report, we begin to bridge that gap by providing evidence that temperature has a significant - but not consistent influence on mating choices and success, and thus on reproductive isolation in . We studied mating propensity and success at four different temperatures among 14 species in non-choice conspecific mating trials and in heterospecific trials among two species triads that are known to regularly hybridize in the wild. We show that mating frequency varies significantly across a 10°C range (from 18°C to 28°C), both in 1:1 mating trials and in high-density trials, but that the effect of temperature is highly species-specific. We also show that mating frequency is consistently low and that temperature has a moderate effect in some heterospecific crosses. As conspecific mating propensity decreases outside of the optimal thermal range, while heterospecific matings remain constant, the proportion of heterospecific matings at suboptimal temperatures is relatively high. This result indicates that temperature can modulate behavioral choices that impose reproductive barriers and influence the rate of hybridization. More broadly, our results demonstrate that to truly understand how mating choice and reproductive isolation occur in nature, they need to be studied in an environmental context.

摘要

行为交配选择和交配成功率是物种形成过程中生殖隔离发展的重要因素。环境条件,尤其是温度,会影响这些关键特征。环境条件在不同物种间可能存在差异,并且常常限定物种的地理分布范围。在分布范围边缘,次优条件与同种个体相对稀少的情况相结合,可能为杂交创造条件。尽管交配行为作为一种生殖屏障很重要,但目前缺乏对行为选择与环境之间相互作用的全面理解,部分原因是系统性研究较少。在本报告中,我们开始填补这一空白,提供证据表明温度对交配选择和成功率具有显著但并非一致的影响,进而对[具体物种]的生殖隔离产生影响。我们在非选择同种交配试验以及已知在野外经常杂交的两个物种三元组的异种交配试验中,研究了14个物种在四种不同温度下的交配倾向和成功率。我们发现,在1:1交配试验和高密度试验中,交配频率在10°C的温度范围内(从18°C到28°C)均有显著变化,但温度的影响具有高度物种特异性。我们还表明,在一些异种杂交中,交配频率一直较低,且温度有中等程度的影响。由于在最佳热范围之外同种交配倾向降低,而异种交配保持不变,因此在次优温度下异种交配的比例相对较高。这一结果表明温度可以调节施加生殖屏障的行为选择,并影响杂交速率。更广泛地说,我们的结果表明,要真正理解自然界中交配选择和生殖隔离是如何发生的,就需要在环境背景下进行研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a529/11565871/be7375268721/nihpp-2024.10.28.620639v1-f0001.jpg

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