首页> 美国卫生研究院文献>Proceedings of the Royal Society B: Biological Sciences >Reproductive character displacement generates reproductive isolation among conspecific populations: an artificial neural network study
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Reproductive character displacement generates reproductive isolation among conspecific populations: an artificial neural network study

机译:生殖特征置换在特定人群中产生生殖隔离:人工神经网络研究

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摘要

When interactions with heterospecifics prevent females from identifying conspecific mates, natural selection can promote the evolution of mating behaviours that minimize such interactions. Consequently, mating behaviours may diverge among conspecific populations in sympatry and in allopatry with heterospecifics. This divergence in conspecific mating behaviours—reproductive character displacement—can initiate speciation if mating behaviours become so divergent as to generate reproductive isolation between sympatric and allopatric conspecifics. We tested these ideas by using artificial neural networks to simulate the evolution of conspecific mate recognition in populations sympatric and allopatric with different heterospecifics. We found that advertisement calls diverged among the different conspecific populations. Consequently, networks strongly preferred calls from their own population to those from foreign conspecific populations. Thus, reproductive character displacement may promote reproductive isolation and, ultimately, speciation among conspecific populations.
机译:当与异种的相互作用阻止雌性识别同种伴侣时,自然选择可以促进使这种相互作用最小化的交配行为的发展。因此,交配行为可能在交配和异源同种异体的同种种群中有所不同。如果交配行为变得如此发散,从而在同生和异源同种之间产生生殖隔离,同种交配行为上的这种差异(生殖性状位移)就可以引发物种形成。我们通过使用人工神经网络模拟了同种异体种群同种异体种群中同种伴侣识别的演变,从而测试了这些想法。我们发现广告呼叫在不同的特定人群之间有所不同。因此,网络强烈建议他们自己的人群拨打电话,而不是外国特定人群的通话。因此,生殖特征的置换可能促进生殖隔离,并最终促进同种种群之间的物种形成。

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