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Consequences of life history switch point plasticity for juvenile morphology and locomotion in the Túngara frog

机译:生活史切换点可塑性对图恩加拉青蛙幼体形态和运动的影响

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摘要

Many animals with complex life cycles can cope with environmental uncertainty by altering the timing of life history switch points through plasticity. Pond hydroperiod has important consequences for the fitness of aquatic organisms and many taxa alter the timing of life history switch points in response to habitat desiccation. For example, larval amphibians can metamorphose early to escape drying ponds. Such plasticity may induce variation in size and morphology of juveniles which can result in carry-over effects on jumping performance. To investigate the carry-over effects of metamorphic plasticity to pond drying, we studied the Túngara frog, Physalaemus pustulosus, a tropical anuran that breeds in highly ephemeral habitats. We conducted an outdoor field mesocosm experiment in which we manipulated water depth and desiccation and measured time and size at metamorphosis, tibiofibula length and jumping performance. We also conducted a complimentary laboratory experiment in which we manipulated resources, water depth and desiccation. In the field experiment, metamorphs from dry-down treatments emerged earlier, but at a similar size to metamorphs from constant depth treatments. In the laboratory experiment, metamorphs from the low depth and dry-down treatments emerged earlier and smaller. In both experiments, frogs from dry-down treatments had relatively shorter legs, which negatively impacted their absolute jumping performance. In contrast, reductions in resources delayed and reduced size at metamorphosis, but had no negative effect on jumping performance. To place these results in a broader context, we review past studies on carry-over effects of the larval environment on jumping performance. Reductions in mass and limb length generally resulted in lower jumping performance across juvenile anurans tested to date. Understanding the consequences of plasticity on size, morphology and performance can elucidate the linkages between life stages.
机译:许多具有复杂生命周期的动物可以通过改变可塑性来改变生命史转换点的时间,从而应对环境的不确定性。池塘水周期对水生生物的适应性具有重要影响,许多生物分类会根据生境的干燥改变生活史转换点的时间。例如,幼虫两栖动物可以早期变质以逃脱干燥的池塘。这种可塑性可能会导致幼体的大小和形态发生变化,从而可能对跳跃性能产生残留影响。为了研究变质可塑性对池塘干燥的残留影响,我们研究了Túngara青蛙Physalaemus pustulosus,这是一种在短时栖息地中繁殖的热带无脊椎动物。我们进行了一个室外田间的中观试验,其中我们操纵了水深和干燥程度,并测量了变态,胫腓骨长度和跳跃性能的时间和大小。我们还进行了免费的实验室实验,在其中我们控制了资源,水深和干燥度。在野外试验中,干燥处理产生的变体较早出现,但大小与恒定深度处理产生的变体相似。在实验室实验中,来自低深度和干燥处理的变体出现得更早,更小。在这两个实验中,干燥处理的青蛙的腿部都相对较短,这对其绝对跳跃性能产生了负面影响。相比之下,资源的减少会延迟并减少变态时的大小,但对跳跃性能没有负面影响。为了将这些结果放在更广阔的背景下,我们回顾了过去关于幼虫环境对跳跃性能的残留影响的研究。体重和肢体长度的减少通常会导致迄今测试的幼年无尾核的跳跃性能降低。了解可塑性对尺寸,形态和性能的影响可以阐明生命阶段之间的联系。

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