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离子转运肽和类离子转运肽调节双斑蟋蜕皮过程中的蜕皮行为和水分运输。

Ion transport peptide and ion transport peptide-like regulate ecdysis behavior and water transport during ecdysis in Gryllus bimaculatus.

作者信息

Zhu Zhen, Nagata Shinji

机构信息

Department of Integrated Biosciences, Graduate School of Frontier Sciences, The University of Tokyo, Chiba, Japan.

Department of Integrated Biosciences, Graduate School of Frontier Sciences, The University of Tokyo, Chiba, Japan.

出版信息

Insect Biochem Mol Biol. 2024 Oct;173:104178. doi: 10.1016/j.ibmb.2024.104178. Epub 2024 Aug 24.

DOI:10.1016/j.ibmb.2024.104178
PMID:39187166
Abstract

Ion transport peptide (ITP) and ITP-like (ITPLs) are pleiotropic bioactive peptides in insects. Although the contribution of these peptides to ecdysis has been studied, the precise regulatory mechanisms remain poorly understood. Here, we characterized the functions of itp and itpl variants in the two-spotted cricket, Gryllus bimaculatus. Reverse transcription-quantitative PCR and whole-mount in situ hybridization revealed that itp was expressed in the brain and terminal abdominal ganglion, whereas itpl variants were expressed in all ganglia of the central nervous system. Simultaneous knockdown of itp and itpls disrupted ecdysis behavior and water transport from the gut into the hemolymph during molting. Nevertheless, knockdown of itpls without influencing itp expression did not significantly affect ecdysis behavior but caused a reduction in hemolymph mass. Although water transport into the hemolymph is considered necessary for the swelling required to split the old cuticle layers during molting, a rescue experiment by injection of water or cricket Ringer's solution into the hemolymph of knockdown crickets did not recover the normal phenotype. Therefore, we propose that ITP/ITPL control ecdysis behavior probably not by regulating water transport from the gut into the hemolymph in crickets.

摘要

离子转运肽(ITP)和类ITP(ITPLs)是昆虫体内具有多效性的生物活性肽。尽管已经对这些肽在蜕皮过程中的作用进行了研究,但确切的调控机制仍知之甚少。在此,我们对双斑蟋(Gryllus bimaculatus)中itp和itpl变体的功能进行了表征。逆转录定量PCR和全组织原位杂交显示,itp在脑和腹部末端神经节中表达,而itpl变体在中枢神经系统的所有神经节中表达。同时敲低itp和itpls会破坏蜕皮行为以及蜕皮期间从肠道到血淋巴的水分运输。然而,在不影响itp表达的情况下敲低itpls不会显著影响蜕皮行为,但会导致血淋巴量减少。尽管在蜕皮期间水分运输到血淋巴中被认为是旧角质层裂开所需肿胀的必要条件,但通过向敲低蟋蟀的血淋巴中注射水或蟋蟀林格氏液进行的拯救实验并未恢复正常表型。因此,我们提出ITP/ITPL可能不是通过调节蟋蟀中从肠道到血淋巴的水分运输来控制蜕皮行为的。

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