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孤啡肽调控半变态昆虫丽蝇前胸腺蜕皮相关神经肽前体基因的表达。

Orcokinins regulate the expression of neuropeptide precursor genes related to ecdysis in the hemimetabolous insect Rhodnius prolixus.

机构信息

Laboratory of Insects Neurobiology, Regional Center for Genomic Studies, Faculty of Exact Sciences, National University of La Plata Bvd 120, 1459 (1900) La Plata, Buenos Aires, Argentina.

Laboratory of Insects Neurobiology, Regional Center for Genomic Studies, Faculty of Exact Sciences, National University of La Plata Bvd 120, 1459 (1900) La Plata, Buenos Aires, Argentina.

出版信息

J Insect Physiol. 2018 Jul;108:31-39. doi: 10.1016/j.jinsphys.2018.05.006. Epub 2018 May 17.

Abstract

Ecdysis is a vital process for insects, during which they shed the old cuticle in order to emerge as the following developmental stage. Given its relevance for survival and reproduction, ecdysis is tightly regulated by peptidic hormones that conform an interrelated neuromodulatory network. This network was studied in species that undergo a complete metamorphosis, but not in hemimetabola. In a recent work, we demonstrated that orcokinin neuropeptides are essential for ecdysis to occur in the kissing bug Rhodnius prolixus. Here we performed gene silencing, quantitative PCR and in vitro treatments in order to study the interrelationships between RhoprOKs and hormones such as ecdysis triggering hormone, corazonin, eclosion hormone, crustacean cardioactive peptide and ecdysone. Our results suggest that RhoprOKs directly or indirectly regulate the expression of other genes. Whereas RhoprOKA is centrally involved in the regulation of gene expression, RhoprOKB is implicated in processes related to midgut physiology. Therefore, we propose that the different transcripts encoded in RhoprOK gene could integrate signaling cues, in order to coordinate the nutritional state with development and ecdysis. Given the emerging data that point to OKs as important factors for survival and reproduction, they could be candidates in the search for new insect management strategies based on neuroendocrine targets.

摘要

蜕皮是昆虫生命过程中的一个重要阶段,在此期间,它们会脱去旧的外骨骼,从而进入下一发育阶段。鉴于蜕皮对昆虫的生存和繁殖至关重要,它受到一系列相关肽类激素的严格调控,这些激素共同构成了一个相互关联的神经调质网络。该网络在经历完全变态的物种中得到了研究,但在不全变态的物种中并未进行研究。在最近的一项研究中,我们证明了章鱼胺神经肽对于吸血蝽(Rhodnius prolixus)的蜕皮过程是必需的。在这里,我们通过基因沉默、定量 PCR 和体外处理的方法,研究了 RhoprOKs 与蜕皮激素触发激素、心侧体激素、脱皮激素、甲壳动物心脏活性肽和蜕皮甾酮等激素之间的相互关系。我们的研究结果表明,RhoprOKs 直接或间接调控其他基因的表达。RhoprOKA 主要参与基因表达的调控,而 RhoprOKB 则与中肠生理过程相关。因此,我们提出 RhoprOK 基因编码的不同转录本可能整合信号线索,以协调营养状态与发育和蜕皮过程。鉴于章鱼胺作为生存和繁殖的重要因素的相关数据不断涌现,它们可能是基于神经内分泌靶点寻找新的昆虫管理策略的候选因素。

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