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Quantitative Morphological Variation in the Developing Drosophila Wing

机译:发育中的果蝇翼的定量形态学变化

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摘要

Quantitative genetic variation in morphology is pervasive in all species and is the basis for the evolution of differences among species. The measurement of morphological form in adults is now beginning to be combined with comparable measurements of form during development. Here we compare the shape of the developing wing to its adult form in a holometabolous insect, Drosophila melanogaster. We used protein expression patterns to measure shape in the developing precursors of the final adult wing. Three developmental stages were studied: late larval third instar, post-pupariation and in the adult fly. We studied wild-type animals in addition to mutants of two genes ( and ) that have known effects on adult wing shape and size. Despite experimental noise related to the difficulty of comparing developing structures, we found consistent differences in wing shape and size at each developmental stage between genotypes. Quantitative comparisons of variation arising at different developmental stages with the variation in the final structure enable us to determine when variation arises, and to generate hypotheses about the causes of that variation. In addition we provide linear rules allowing us to link wing morphology in the larva, with wing morphology in the pupa. Our approach provides a framework to analyze quantitative morphological variation in the developing fly wing. This framework should help to characterize the natural variation of the larval and pupal wing shape, and to measure the contribution of the processes occurring during these developmental stages to the natural variation in adult wing morphology.
机译:形态上的定量遗传变异在所有物种中普遍存在,并且是物种间差异进化的基础。现在,成年人的形态学形态测量已开始与发育过程中可比的形态学测量相结合。在这里,我们比较了全代谢昆虫果蝇果蝇(Drosophila melanogaster)中发育中的翅膀的形状与其成年形式。我们使用蛋白质表达模式来测量最终成年机翼的发育中前体的形状。研究了三个发育阶段:晚期幼虫三龄,产后和成年蝇。除了研究对成年机翼形状和大小有已知影响的两个基因(和)的突变体之外,我们还研究了野生型动物。尽管实验噪声与比较发育结构的难度有关,但我们发现基因型在每个发育阶段的机翼形状和大小均存在一致差异。在不同的开发阶段产生的变异与最终结构中的变异进行定量比较,使我们能够确定何时出现变异,并产生关于该变异原因的假设。此外,我们提供了线性规则,使我们可以将幼虫中的机翼形态与the中的机翼形态联系起来。我们的方法为分析发育中的机翼中的定量形态变化提供了一个框架。该框架应有助于表征幼虫和p翼形状的自然变化,并衡量在这些发育阶段发生的过程对成年机翼形态自然变化的贡献。

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