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首页> 外文期刊>The Journal of Experimental Biology >Beauty in the eye of the beholder: the two blue opsins of lycaenid butterflies and the opsin gene-driven evolution of sexually dimorphic eyes
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Beauty in the eye of the beholder: the two blue opsins of lycaenid butterflies and the opsin gene-driven evolution of sexually dimorphic eyes

机译:情人眼中的美丽:蝶形蝴蝶的两个蓝色视蛋白和视蛋白基因驱动的性双态性眼睛的进化

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Although previous investigations have shown that wing coloration is an important component of social signaling in butterflies, the contribution of opsin evolution to sexual wing color dichromatism and interspecific divergence remains largely unexplored. Here we report that the butterfly Lycaena rubidus has evolved sexually dimorphic eyes due to changes in the regulation of opsin expression patterns to match the contrasting life histories of males and females. The L. rubidus eye contains four visual pigments with peak sensitivities in the ultraviolet (UV; lambda(max)= 360 nm), blue (B; lambda(max)= 437 nm and 500 nm, respectively) and long (LW; lambda(max)= 568 nm) wavelength range. By combining in situ hybridization of cloned opsin-encoding cDNAs with epi-microspectrophotometry, we found that all four opsin mRNAs and visual pigments are expressed in the eyes in a sex-specific manner. The male dorsal eye, which contains only UV and B (lambda(max)= 437 nm) visual pigments, indeed expresses two short wavelength opsin mRNAs, UVRh and BRh1. The female dorsal eye, which also has the UV and B (lambda(max)= 437 nm) visual pigments, also contains the LW visual pigment, and likewise expresses UVRh, BRh1 and LWRh mRNAs. Unexpectedly, in the female dorsal eye, we also found BRh1 co-expressed with LWRh in the R3-8 photoreceptor cells. The ventral eye of both sexes, on the other hand, contains all four visual pigments and expresses all four opsin mRNAs in a non-overlapping fashion. Surprisingly, we found that the 500 nm visual pigment is encoded by a duplicate blue opsin gene, BRh2. Further, using molecular phylogenetic methods we trace this novel blue opsin gene to a duplication event at the base of the Polyommatine+Thecline+Lycaenine radiation. The blue opsin gene duplication may help explain the blueness of blue lycaenid butterflies.
机译:尽管先前的研究表明,翅膀的颜色是蝴蝶社会信号传递的重要组成部分,但视蛋白进化对性翅膀颜色双色性和种间差异的贡献仍未得到充分研究。在这里,我们报告说,由于视蛋白表达模式的调节发生变化,以适应雄性和雌性的相反生活史,蝴蝶Lycaena rubidus已进化出性二形眼。红景天眼含有四种视觉色素,在紫外线(UV; lambda(max)= 360 nm),蓝色(B; lambda(max)= 437 nm和500 nm)和长(LW; lambda (最大)= 568 nm)波长范围。通过结合原位杂交克隆视蛋白编码的cDNA与epi显微分光光度法,我们发现所有四个视蛋白mRNA和视觉色素均以性别特异性方式在眼中表达。男性背眼仅包含UV和B(λ(最大值)= 437 nm)视觉色素,实际上表达了两种短波长视蛋白mRNA,UVRh和BRh1。雌性背面眼睛也具有UV和B(λ(最大值)= 437 nm)视觉色素,也包含LW视觉色素,并同样表达UVRh,BRh1和LWRh mRNA。出乎意料的是,在雌性背侧眼中,我们还发现BRh1与LWRh在R3-8感光细胞中共表达。另一方面,两性的腹侧眼包含所有四种视觉色素,并以不重叠的方式表达所有四种视蛋白mRNA。出乎意料的是,我们发现500 nm视觉色素是由重复的蓝色视蛋白基因BRh2编码的。此外,使用分子系统发育方法,我们将这个新的蓝色视蛋白基因追踪到在多形组织+茶氨酸+ lycaenine辐射的基础上发生的重复事件。蓝色视蛋白基因重复可能有助于解释蓝色蝶形蝴蝶的蓝色。

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