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首页> 外文期刊>Evolution: International Journal of Organic Evolution >Microgeographic countergradient variation in the wood frog, Rana sylvatica
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Microgeographic countergradient variation in the wood frog, Rana sylvatica

机译:木蛙蛙蛙的微观地理反梯度变化

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摘要

Prior studies have shown that macrogeographic gradients in temperature associated with latitude and altitude can lead to countergradient patterns of variation in a number of taxa: individuals from colder environments are known to grow or develop faster than their conspecifics from warmer environments when placed in a common setting. In this study, I hypothesized that countergradient variation also is important at microgeographic scales. The wood frog, Rana sylvatica, breeds in open-canopied, temporary wetlands as well as those heavily shaded by vegetation. Shading leads to cooler thermal environments that are associated with embryonic development rates as much as 50% slower than those in unshaded wetlands. Wetlands with contrasting canopy environments are often found within tens or hundreds of meters of each other. In a common garden experiment, embryos from nearby natural wetlands displayed countergradient variation: individuals collected from shaded wetlands developed up to 12% faster than those collected from relatively unshaded wetlands. The results of this study suggest that the concept of countergradient variation may be extended to small scales of space. In addition, the rate and scale of vegetation dynamics (the agent of wetland shading) imply that divergence in development among residents of nearby wetlands may be relatively rapid, on the order of decades. [References: 42]
机译:先前的研究表明,与纬度和高度相关的温度的宏观地理梯度可能导致许多类群的反梯度变化模式:已知在较冷的环境中将其放在同一个环境中,其生长或发育要比在较热的环境中的同种异种更快。 。在这项研究中,我假设反梯度变化在微观地理尺度上也很重要。木蛙Rana sylvatica,在开放遮盖的临时湿地以及被植被严重遮盖的湿地中繁殖。遮荫会导致较凉爽的热环境,与未遮盖湿地的环境相比,与胚胎发育速度有关的环境要慢50%。冠层环境相反的湿地通常位于彼此之间数十米或数百米内。在一个普通的花园实验中,来自附近自然湿地的胚胎表现出反梯度变化:从阴凉的湿地收集的个体发育速度比从相对未遮蔽的湿地收集的个体快12%。这项研究的结果表明,反梯度变化的概念可能会扩展到小规模的空间。此外,植被动力学的速率和尺度(湿地阴影的推动剂)暗示着附近湿地居民之间的发展差异可能相对较快,约为数十年。 [参考:42]

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