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首页> 外文期刊>Canadian Journal of Zoology >Jumping performance and short-term repeatability of newly metamorphosedhybrid and parental leopard frogs (Rana sphenocephala and Rana blairi)
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Jumping performance and short-term repeatability of newly metamorphosedhybrid and parental leopard frogs (Rana sphenocephala and Rana blairi)

机译:新变种杂种和亲代豹蛙(蛙蛙和蛙蛙)的跳跃性能和短期可重复性

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摘要

Differential fitness between hybrid and parental genotypes plays a critical role in explaining the maintenance of natural hybrid zones as well as the production of novel genetic variation that may lead to diversification. Because locomotor performance is a reliable and practical measure of potential fitness related to morphological variation, we tested for differences in jumping performance among parental and hybrid genotypes of newly metamorphosed leopard frogs (Rana sphenocephala and Rana blairi). Tadpoles of the parental species and primary and backcross hybrid tadpoles, generated from artificial crosses (a total of five genotypes), were reared at two initial larval densities. Locomotor performance of newly metamorphosed frogs, as measured by jumping ability, was tested three times over 6 days in the laboratory at 24-25 degrees C. Maximum and average jump lengths were greater for metamorphs reared at low larval density than for those reared at high density. Regression analyses indicated that 70-79% of the variation in jump length was due to body mass. When reared at low density, metamorphs of two F-1 backcross genotypes (HB and HS) and one primary hybrid genotype (SB) jumped shorter distances than either parental species. When reared at high density, hybrid performance was indistinguishable from that of the parentals, except for one backcross hybrid (HB). Moderately high short-term repeatabilities (0.47-0.66) of metamorphs reared at the high density indicate that measures of performance in newly metamorphosed frogs can be predictive. We suggest that, owing to poor jumping performance, some hybrid frogs would be at a selective disadvantage relative to their parental species in the terrestrial environment and thus would partially reinforce mechanisms of reproductive isolation in this leopard frog system. Yet equivalent performance of some hybrids relative to the parentals, at least when reared at low density, suggests that hybrid lineages also have the potential to evolve independently in some environments.
机译:杂种和亲本基因型之间的差异适应性在解释天然杂种区的维持以及可能导致多样化的新遗传变异的产生中起着至关重要的作用。因为运动能力是与形态变异相关的潜在适应性的可靠且实用的度量,所以我们测试了新变态豹子蛙(蛙蛙和蛙蛙)的亲本和杂交基因型之间跳跃性能的差异。人工杂交(共有五种基因型)产生的亲本物种的and和初级和回交杂种t以两个初始幼体密度饲养。通过跳跃能力测量的新变态青蛙的运动能力在实验室中于24-25摄氏度下于6天之内测试了3次。在低幼虫密度下饲养的变体的最大和平均跳跃长度大于在高幼虫密度下饲养的变体的最大和平均跳跃长度。密度。回归分析表明,跳跃长度变化的70-79%是由于体重引起的。当以低密度饲养时,两个F-1回交基因型(HB和HS)和一个主要杂种基因型(SB)的变体跳跃距离比任何亲本物种短。当以高密度饲养时,除一个回交杂种(HB)外,杂种表现与亲本没有区别。以高密度饲养的中等高度的短期中等可重复性(0.47-0.66)表明,新变态青蛙的表现指标可以预测。我们建议,由于跳跃性能差,某些杂种蛙相对于其在陆地环境中的亲本物种处于选择性不利的地位,因此会部分加强这种豹蛙系统中的生殖隔离机制。至少在低密度饲养时,某些杂种相对于亲本的性能相当,这表明杂种谱系在某些环境中也具有独立进化的潜力。

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