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Butterfly eyespot patterns and how evolutionary tinkering yields diversity

机译:蝴蝶眼镜图案以及进化滋补化的产生程度

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Eyespots are repeated elements in the wing pattern of butterflies. In the species-rich genus of Bicyclus, all eyespots are formed by the same developmental process. Artificial selection in B. anynana has explored how readily two of the eyespots can become different to each other. There is sufficient standing genetic and developmental variation in a single stock of this species for high flexibility in the responses for eyespot size; indeed selection over 25 generations in several directions of morphospace yielded phe-notypes far beyond the variability found in the whole genus. In contrast, experiments on another eyespot trait, their colour composition, indicate that comparable flexibility occurs only along the axis of least resistance in which both eyespots change in the same direction. This result is reflected in both a clear difference in the developmental regulation of eyespot size and colour composition, and in the patterns of variability among species. Such research that integrates evolutionary genetics and Evo-Dcvo will eventually reveal how evolutionary tinkering occurs in both genetical and developmental terms, and will also explore the consequences of differences in evolvability for patterns of diversity.
机译:眼镜是蝴蝶翼模式的重复元素。在富含自旋的富含物种的属中,所有眼睛都是通过相同的发育过程形成的。 B. Anynana的人工选择已经探讨了两个眼镜彼此不同的观点。在眼镜尺寸的反应中,该物种的单一库存中有足够的遗传和发育变异,对于高度的响应;在Morphospace的几个方向上的25代中的确实选择,远远超出了整个属中发现的可变性的Phe-entypes。相反,在另一个眼睛特征,它们的颜色组合物上的实验表明,仅沿着阻力的最小阻力的轴线发生相当的灵活性,在其两个眼睛的变化相同方向上。该结果反映在眼镜尺寸和颜色组成的发育调节中的明显差异,以及物种之间的变异模式。整合进化遗传学和EVO-DCVO的这种研究最终揭示了在基因异化和发育术语中如何发生进化的滋润,并且还将探讨变化模式的不断变化的后果。

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