Zhang Linlin, Martin Arnaud, Perry Michael W, van der Burg Karin R L, Matsuoka Yuji, Monteiro Antónia, Reed Robert D
Department of Ecology and Evolutionary Biology, Cornell University, Ithaca, New York 14853-7202
Department of Biological Sciences, The George Washington University, Washington, DC 20052.
Genetics. 2017 Apr;205(4):1537-1550. doi: 10.1534/genetics.116.196451. Epub 2017 Feb 13.
Despite the variety, prominence, and adaptive significance of butterfly wing patterns, surprisingly little is known about the genetic basis of wing color diversity. Even though there is intense interest in wing pattern evolution and development, the technical challenge of genetically manipulating butterflies has slowed efforts to functionally characterize color pattern development genes. To identify candidate wing pigmentation genes, we used RNA sequencing to characterize transcription across multiple stages of butterfly wing development, and between different color pattern elements, in the painted lady butterfly This allowed us to pinpoint genes specifically associated with red and black pigment patterns. To test the functions of a subset of genes associated with presumptive melanin pigmentation, we used clustered regularly interspaced short palindromic repeats (CRISPR)/Cas9 genome editing in four different butterfly genera. , , and knockouts displayed reduction of melanin pigmentation, consistent with previous findings in other insects. Interestingly, however, , , and knockouts revealed that these genes have localized effects on tuning the color of red, brown, and ochre pattern elements. These results point to previously undescribed mechanisms for modulating the color of specific wing pattern elements in butterflies, and provide an expanded portrait of the insect melanin pathway.
尽管蝴蝶翅膀图案种类繁多、十分显著且具有适应性意义,但令人惊讶的是,我们对翅膀颜色多样性的遗传基础知之甚少。尽管人们对翅膀图案的进化和发育有着浓厚兴趣,但对蝴蝶进行基因操作的技术挑战减缓了对颜色图案发育基因进行功能表征的努力。为了鉴定候选翅膀色素沉着基因,我们利用RNA测序对小苎麻赤蛱蝶翅膀发育的多个阶段以及不同颜色图案元素之间的转录情况进行了表征。这使我们能够确定与红色和黑色色素图案特异性相关的基因。为了测试与假定黑色素沉着相关的一部分基因的功能,我们在四个不同的蝴蝶属中使用了成簇规律间隔短回文重复序列(CRISPR)/Cas9基因组编辑技术。 、 和 的基因敲除显示黑色素沉着减少,这与之前在其他昆虫中的研究结果一致。然而,有趣的是, 、 和 的基因敲除表明,这些基因对调节红色、棕色和赭色图案元素的颜色具有局部作用。这些结果揭示了蝴蝶中调节特定翅膀图案元素颜色的此前未被描述的机制,并提供了昆虫黑色素途径的扩展描述。