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生长调控和附肢模式基因在叶蝉前胸背板形态发生中的作用。

The roles of growth regulation and appendage patterning genes in the morphogenesis of treehopper pronota.

机构信息

Department of Biology, Duke University, Durham, NC 27708, USA.

Escuela de Biología, Universidad de Costa Rica, San José, Costa Rica.

出版信息

Proc Biol Sci. 2022 Jun 8;289(1976):20212682. doi: 10.1098/rspb.2021.2682.

Abstract

Treehoppers of the insect family Membracidae have evolved enlarged and elaborate pronotal structures, which is hypothesized to involve co-opted expression of genes that are shared with the wings. Here, we investigate the similarity between the pronotum and wings in relation to growth. Our study reveals that the ontogenetic allometry of the pronotum is similar to that of wings in Membracidae, but not the outgroup. Using transcriptomics, we identify genes related to translation and protein synthesis, which are mutually upregulated. These genes are implicated in the eIF2, eIF4/p70S6K and mTOR pathways, and have known roles in regulating cell growth and proliferation. We find that species-specific differential growth patterning of the pronotum begins as early as the third instar, which suggests that expression of appendage patterning genes occurs long before the metamorphic molt. We propose that a network related to growth and size determination is the more likely mechanism shared with wings. However, regulators upstream of the shared genes in pronotum and wings need to be elucidated to substantiate whether co-option has occurred. Finally, we believe it will be helpful to distinguish the mechanisms leading to pronotal size from those regulating pronotal shape as we make sense of this spectacular evolutionary innovation.

摘要

叶蝉科(Membracidae)的叶蝉进化出了增大和精细的前胸结构,据推测,这涉及到与翅膀共享的基因的共调控表达。在这里,我们研究了前胸与翅膀在生长方面的相似性。我们的研究表明,叶蝉科前胸的个体发生生长比例与翅膀相似,但与外群不同。通过转录组学,我们确定了与翻译和蛋白质合成相关的基因,它们相互上调。这些基因涉及到 eIF2、eIF4/p70S6K 和 mTOR 途径,已知它们在调节细胞生长和增殖中起作用。我们发现,前胸的物种特异性差异生长模式早在第三龄期就开始了,这表明附属物模式基因的表达发生在变态蜕皮之前很久。我们提出,与生长和大小决定相关的网络是与翅膀共享的更可能的机制。然而,需要阐明前胸和翅膀中共享基因的上游调节剂,以证实是否发生了共调控。最后,我们认为,在理解这种壮观的进化创新时,区分导致前胸大小的机制和调节前胸形状的机制将是有帮助的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8d96/9174728/6597be808605/rspb20212682f01.jpg

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