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Premating, Not Postmating, Barriers Drive Genetic Dynamics in Experimental Hybrid Populations of the Endangered Sonoran Topminnow

机译:提前而不是提前推迟的障碍驱动着濒危Sonoran Topminnow实验性杂交种群的遗传动力学。

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摘要

The timing and pattern of reproductive barrier formation in allopatric populations has received much less attention than the accumulation of reproductive barriers in sympatry. The theory of allopatric speciation suggests that reproductive barriers evolve simply as by-products of overall genetic divergence. However, observations of enhanced premating barriers in allopatric populations suggest that sexual selection driven by intraspecific competition for mates may enhance species-specific signals and accelerate the speciation process. In a previous series of laboratory trials, we examined the strength of premating and postmating barriers in an allopatric species pair of the endangered Sonoran topminnow, Poeciliopsis occidentalis and P. sonoriensis. Behavioral observations provided evidence of asymmetrical assortative mating, while reduced brood sizes and male-biased F1 sex ratios suggest postmating incompatibilities. Here we examine the combined effects of premating and postmating barriers on the genetic makeup of mixed populations, using cytonuclear genotype frequencies of first- and second-generation offspring. Observed genotype frequencies strongly reflect the directional assortative mating observed in behavioral trials, illustrating how isolating barriers that act earlier in the reproductive cycle will have a greater effect on total reproductive isolation and may be more important to speciation than subsequent postmating reproductive barriers.
机译:同种异体种群中生殖屏障形成的积累,异位人群中生殖屏障形成的时间和方式受到的关注要少得多。异源物种形成理论认为,生殖障碍只是作为整体遗传差异的副产物而进化的。然而,对异源种群中增强的繁殖障碍的观察表明,由种内竞争对伴侣进行的性选择可能会增强物种特异性信号并加速物种形成过程。在先前的一系列实验室试验中,我们研究了濒危的Sonoran topminnow,Poeciliopsis occidentalis和P. sonoriensis的同种异体物种对中过早和过早屏障的强度。行为观察提供了不对称分类交配的证据,而育雏尺寸的减小和男性偏向的F1性别比则表明产后不相容。在这里,我们使用第一代和第二代后代的细胞核基因型频率,研究了过早和过早屏障对混合种群遗传构成的综合影响。观察到的基因型频率强烈地反映了在行为试验中观察到的定向杂种交配,说明了在生殖周期中较早起作用的隔离屏障将如何对总体生殖隔离产生更大的影响,并且比随后的生殖屏障更可能对物种形成更为重要。

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