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Artificially induced changes of butterfly wing colour patterns: dynamic signal interactions in eyespot development

机译:人工诱导的蝴蝶翅膀颜色模式变化:眼点发展中的动态信号相互作用

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Eyespot formation in butterfly wings has been explained by the concentration gradient model. However, this model has recently been questioned, and dynamic interactions between the black-inducing signal and its inhibitory signal have been proposed. Here, the validity of these models was examined using a nymphalid butterfly Junonia almana. Early focal damage to the major eyespots often made them smaller, whereas the late damage made the outer ring larger and the inner ring smaller in a single eyespot. Non-focal damage at the outer ring not only attracted the whole eyespot structure toward the damaged site but also reduced the overall size of the eyespot. Surprisingly, a reduction of the major eyespot was accompanied by an enlargement of the associated miniature eyespots. These results demonstrate limitations of the conventional gradient model and support a dynamic interactive nature of morphogenic signals for colour-pattern determination in butterfly wings.. ? 2011 Macmillan Publishers Limited. All rights reserved
机译:蝴蝶翅膀上的眼点形成已由浓度梯度模型解释。然而,该模型最近受到质疑,并且已经提出了黑色诱导信号与其抑制信号之间的动态相互作用。在这里,这些模型的有效性是通过使用蝶形蝴蝶Junonia almana进行的。早期对主要眼点的焦点损害通常会使它们变小,而后期损害使单个眼点中的外环变大而内环变小。外圈的非焦点损坏不仅将整个眼点结构吸引到受损部位,还减小了眼点的整体大小。令人惊讶的是,主视点的减少伴随着相关微型视点的扩大。这些结果证明了常规梯度模型的局限性,并支持用于确定蝴蝶翅膀中彩色图案的形态发生信号的动态交互性质。 2011 Macmillan Publishers Limited。版权所有

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