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依赖于系统的颜色图案发育调控:淡草蛱蝶的诱变研究。

System-dependent regulations of colour-pattern development: a mutagenesis study of the pale grass blue butterfly.

机构信息

BCPH Unit of Molecular Physiology, Department of Chemistry, Biology and Marine Science, Faculty of Science, University of the Ryukyus, Nishihara, Okinawa, Japan.

出版信息

Sci Rep. 2013;3:2379. doi: 10.1038/srep02379.

Abstract

Developmental studies on wing colour patterns have been performed in nymphalid butterflies, but efficient genetic manipulations, including mutagenesis, have not been well established. Here, we have performed mutagenesis experiments in a lycaenid butterfly, the pale grass blue Zizeeria maha, to produce colour-pattern mutants. We fed the P-generation larvae an artificial diet containing the mutagen ethyl methane sulfonate (EMS), and the F1- and F2-generation adults showed various aberrant colour patterns: dorsoventral transformation, anterioposterior background colouration gap, weak contrast, disarrangement of spots, reduction of the size of spots, loss of spots, fusion of spots, and ectopic spots. Among them, the disarrangement, reduction, and loss of spots were likely produced by the coordinated changes of many spots of a single wing around the discal spot in a system-dependent manner, demonstrating the existence of the central symmetry system. The present study revealed multiple genetic regulations for system-dependent and wing-wide colour-pattern determination in lycaenid butterflies.

摘要

在鳞翅目蝴蝶中已经进行了翅膀颜色模式的发育研究,但有效的遗传操作,包括诱变,尚未得到很好的建立。在这里,我们在一种蛱蝶,淡草蓝 Zizeeria maha 中进行了诱变实验,以产生颜色模式突变体。我们用含有诱变剂乙基甲烷磺酸酯(EMS)的人工饲料喂养 P 代幼虫,F1 和 F2 代成虫表现出各种异常的颜色模式:背腹向转换、前后背景颜色间隙、对比度弱、斑点排列紊乱、斑点大小减小、斑点缺失、斑点融合和异位斑点。其中,斑点的排列紊乱、减少和缺失可能是由单一翅膀上围绕盘状斑点的许多斑点的协调变化以系统依赖的方式产生的,这表明存在中心对称系统。本研究揭示了在蛱蝶中系统依赖和翅膀宽的颜色模式决定的多种遗传调控。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bd59/3753731/462437734385/srep02379-f8.jpg

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