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分期和性别特异性转录组分析揭示了蝴蝶中独特的感觉基因表达模式。

Stage- and sex-specific transcriptome analyses reveal distinctive sensory gene expression patterns in a butterfly.

机构信息

Department of Biological Sciences, University of Arkansas, 72701, Fayetteville, AR, USA.

出版信息

BMC Genomics. 2021 Aug 2;22(1):584. doi: 10.1186/s12864-021-07819-4.

Abstract

BACKGROUND

Animal behavior is largely driven by the information that animals are able to extract and process from their environment. However, the function and organization of sensory systems often change throughout ontogeny, particularly in animals that undergo indirect development. As an initial step toward investigating these ontogenetic changes at the molecular level, we characterized the sensory gene repertoire and examined the expression profiles of genes linked to vision and chemosensation in two life stages of an insect that goes through metamorphosis, the butterfly Bicyclus anynana.

RESULTS

Using RNA-seq, we compared gene expression in the heads of late fifth instar larvae and newly eclosed adults that were reared under identical conditions. Over 50 % of all expressed genes were differentially expressed between the two developmental stages, with 4,036 genes upregulated in larval heads and 4,348 genes upregulated in adult heads. In larvae, upregulated vision-related genes were biased toward those involved with eye development, while phototransduction genes dominated the vision genes that were upregulated in adults. Moreover, the majority of the chemosensory genes we identified in the B. anynana genome were differentially expressed between larvae and adults, several of which share homology with genes linked to pheromone detection, host plant recognition, and foraging in other species of Lepidoptera.

CONCLUSIONS

These results revealed promising candidates for furthering our understanding of sensory processing and behavior in the disparate developmental stages of butterflies and other animals that undergo metamorphosis.

摘要

背景

动物的行为在很大程度上取决于它们能够从环境中提取和处理的信息。然而,感觉系统的功能和组织通常会在个体发育过程中发生变化,尤其是在经历间接发育的动物中。为了在分子水平上研究这些发育变化,我们对蝴蝶 Bicyclus anynana 的两个生命阶段的感觉基因库进行了特征描述,并研究了与视觉和化学感觉相关的基因的表达谱。

结果

我们使用 RNA-seq 比较了在相同条件下饲养的第五龄晚期幼虫和新羽化成虫头部的基因表达。两个发育阶段之间有超过 50%的所有表达基因存在差异表达,其中 4036 个基因在幼虫头部上调,4348 个基因在成虫头部上调。在幼虫中,上调的与视觉相关的基因偏向于那些与眼睛发育有关的基因,而在成虫中上调的光转导基因则主导了视觉基因。此外,我们在 B. anynana 基因组中鉴定的大多数化学感觉基因在幼虫和成虫之间存在差异表达,其中一些与其他鳞翅目昆虫的信息素检测、寄主植物识别和觅食相关基因具有同源性。

结论

这些结果为进一步了解蝴蝶和其他经历变态发育的动物在不同发育阶段的感觉处理和行为提供了有希望的候选基因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b5e6/8327453/f10407aec3e9/12864_2021_7819_Fig1_HTML.jpg

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