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The genes expression difference between winged and wingless bird cherry-oat aphid Rhopalosiphum padi based on transcriptomic data

机译:基于转录组数据的有翅和无翅鸟樱桃蚜蚜Rhodolosiphum padi基因表达差异

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Aphids produce wing and wingless morphs, depending on the environmental conditions during their complex life cycles. Wing and wingless variations play an important role in migration and host alternation, affecting the migration and host alternation processes. Several transcriptional studies have concentrated on aphids and sought to determine how an organism perceives environmental cues and responds in a plastic manner, but the underlying mechanisms have remained unclear. Therefore, to better understand the molecular mechanisms underlying the wing polyphenism of this fascinating phenomenon, we provide the first report concerning the wing development of aphids in bird cherry-oat aphid Rhopalosiphum padi with comparative transcriptional analysis of all the developmental stages by RNA-Seq. We identified several candidate genes related to biogenic amines and hormones that may be specifically involved in wing development. Moreover, we found that the third instar stage might be a critical stage for visibility of alternative morphs as well as changes in the expression of thirty-three genes associated with wing development. Several genes, i.e., Wnt2, Fng, Uba1, Hh, Foxo, Dpp, Brk, Ap, Dll, Hth, Tsh, Nub, Scr, Antp, Ubx, Asc, Srf and Fl, had different expression levels in different developmental stages and may play important roles in regulating wing polyphenism.
机译:蚜虫会根据其复杂生命周期中的环境条件产生有翅和无翅的变体。机翼和无翼变异在迁移和主机交替方面起着重要作用,影响迁移和主机交替过程。几项转录研究集中在蚜虫上,试图确定生物体如何感知环境线索并以可塑性方式做出反应,但其潜在机制仍不清楚。因此,为了更好地了解这种引人入胜的现象的翅膀多态性的分子机制,我们提供了第一个有关鸟樱桃燕麦蚜虫Rhopalosiphum padi中蚜虫翅膀发育的报告,并通过RNA-Seq对所有发育阶段进行了比较转录分析。我们确定了几个可能与机翼发育有关的与生物胺和激素有关的候选基因。此外,我们发现第三龄期可能是替代变体的可见性以及与机翼发育相关的33个基因表达变化的关键阶段。 Wnt2,Fng,Uba1,Hh,Foxo,Dpp,Brk,Ap,Dll,Hth,Tsh,Nub,Scr,Antp,Ubx,Asc,Srf和Fl等几个基因在不同的发育阶段具有不同的表达水平,可能在调节机翼多态性中起重要作用。

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