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首页> 外文期刊>Journal of genetics >Multidimensional analysis of Drosophila wing variation in Evolution Canyon
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Multidimensional analysis of Drosophila wing variation in Evolution Canyon

机译:进化峡谷果蝇翅膀变异的多维分析

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Environmental stress has been suggested to be a major evolutionary force, both through inducing strong selection and because of its direct impact on developmental buffering processes that alter the evolvability of organisms. In particular, temperature has attracted much attention because of its importance as an ecological feature and the relative ease with which it can be experimentally manipulated in the lab. Evolution Canyon, Lower Nahal Oren, Israel, is a well studied natural site where ecological parameters are suspected to drive evolutionary differentiation. In this study, using Drosophila melanogaster isofemale lines derived from wild flies collected on both slopes of the canyon, we investigated the effect of developmental temperature upon the different components of phenotypic variation of a complex trait: the wing. Combining geometric and traditional morphometrics, we find only limited evidence for a differentiation among slopes. Investigating simultaneously phenotypic plasticity, genetic variation among isofemale lines, variation among individuals and fluctuating asymmetry, we could not identify a consistent effect of the stressful conditions encountered on the south facing slope. The prevailing structuring effect is that of the experimentally manipulated temperature which clearly influences wing mean size and shape. Variability, in contrast, is not consistently affected by temperature. Finally, we investigated the specific relationship between individual variation and fluctuating asymmetry. Using metric multi-dimensional scaling we show that the related patterns of wing shape variation are not identical, supporting the view that the underlying developmental processes are to a certain extent different.
机译:通过诱导强烈的选择以及由于其对改变生物体可进化性的发育缓冲过程的直接影响,已提出环境胁迫是主要的进化力。特别地,由于温度作为一种生态特征的重要性以及可以在实验室中进行实验操作的相对容易性,温度已经引起了人们的极大关注。以色列下那哈勒奥伦(Lower Nahal Oren)的进化峡谷(Evolution Canyon)是一个经过充分研究的自然地点,据怀疑生态参数会推动进化分化。在这项研究中,使用果蝇的果蝇等雌性品系来自于峡谷两个斜坡上采集的野生果蝇,我们研究了发育温度对复杂性状表型的不同组成部分的影响。结合几何形态学和传统形态学,我们仅发现有限的证据来区分坡度。同时调查表型可塑性,等雌系间的遗传变异,个体间的变异和波动的不对称性,我们无法确定在朝南的斜坡上遇到的压力条件的一致影响。主要的结构效果是实验控制温度的效果,该温度明显影响机翼的平均大小和形状。相反,可变性不受温度的影响。最后,我们研究了个体变化与波动不对称之间的具体关系。使用度量多维标度,我们显示了机翼形状变化的相关模式不完全相同,从而支持以下观点:潜在的发展过程在一定程度上有所不同。

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