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首页> 外文期刊>Genetics and Molecular Research >Preliminary analysis on the developmental transcriptomes of swallowtail butterfly Papilio polytes (Lepidoptera: Papilioidae)
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Preliminary analysis on the developmental transcriptomes of swallowtail butterfly Papilio polytes (Lepidoptera: Papilioidae)

机译:燕尾蝴蝶凤蝶发育的转录组初步分析(鳞翅目:凤蝶科)

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The butterflies are one of the insect groups which undergo typical complete metamorphosis in their life history. However, up to now, little is known about the genomic mechanism that regulates the butterfly metamorphosis. In this study, using a swallowtail butterfly P. polytes as a model organism, a high-throughput sequencing platform was employed to perform the transcriptome and gene expression analyses in order to explore the P. polytes transcriptome features during different developmental stages. The results showed that approximately 398 million useful (Q20) reads were assembled into groups of 14698 (L1), 14264 (L2), 15084 (L3), 15520 (P1), 15052 (P2), 15720 (P3) and 15709 (A1), 14668 (A2), 16152 (A3) genes, respectively, with 58.19% to 67.11% of the data successfully mapped to the reference genome; the transcriptome change analysis via the DEGs Package revealed that dramatic gene expression differences were presented among the different developmental stages, that is, totally, 1162, 891 and 1723 genes were differentially expressed between adult and pupal, adult and larval, larval and pupal stages, respectively, with a number of these differentially expressed genes associated with the functions of digestion, cuticularization, chemoreception, wing formation, and so on. These differentially expressed genes and potential candidate genes required for butterfly metamorphosis by comparative transcriptomics may shed some new insights on molecular mechanisms underlying complete metamorphosis.
机译:蝴蝶是一类昆虫,在其生活史中经历了典型的完全变态。然而,到目前为止,对调节蝴蝶变态的基因组机制了解甚少。在这项研究中,以燕尾蝴蝶多形疟原虫为模型生物,使用高通量测序平台进行转录组和基因表达分析,以探索不同发育阶段的多形疟原虫转录组特征。结果显示,将约3.98亿个有用(Q20)读数组装为14698(L1),14264(L2),15084(L3),15520(P1),15052(P2),15720(P3)和15709(A1) ),14668(A2),16152(A3)个基因,其中58.19%至67.11%的数据已成功映射到参考基因组;通过DEGs软件包进行的转录组变化分析表明,在不同的发育阶段之间存在着显着的基因表达差异,即在成年和and期,成年和幼虫期,幼虫和p期之间总共差异表达了1162、891和1723个基因,这些差异表达的基因分别与消化,表皮化,化学感受,机翼形成等功能有关。通过比较转录组学,这些差异表达的基因和蝴蝶变态所需的潜在候选基因可能为完全变态的分子机制提供一些新见解。

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