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海藻糖-6-磷酸合酶基因TPS3对褐飞虱(Nilaparvata lugens)几丁质代谢的调控功能

Regulatory function of the trehalose-6-phosphate synthase gene TPS3 on chitin metabolism in brown planthopper, Nilaparvata lugens.

作者信息

Zhou Min, Shen Qida, Wang Shasha, Li Guoyong, Wu Yan, Xu Caidi, Tang Bin, Li Can

机构信息

Guizhou Provincial Key Laboratory for Rare Animal and Economic Insect of the Mountainous Region, College of Biology and Environmental Engineering, Guiyang University, Guiyang, China.

College of Life and Environmental Sciences, Hangzhou Normal University, Hangzhou, China.

出版信息

Insect Mol Biol. 2022 Apr;31(2):241-250. doi: 10.1111/imb.12754. Epub 2022 Jan 17.

Abstract

Brown planthopper (Nilaparvata lugens) is one of the important pests that damage rice. Trehalose-6-phosphate synthase (TPS) is a key enzyme responsible for catalysing the biosynthesis of trehalose, which is the energy substance of insects. In this study, combined with the reported N. lugens TPS1, TPS2 and newly discovered TPS3, we studied the regulation of TPS in chitin metabolism by RNA interference. Firstly, we found that the relative expression levels of TRE1-1, TRE1-2 and TRE2 increased significantly after 48 h of dsTPS3 injection, and the activity of TRE1 enhanced significantly. Secondly, abnormal and lethal phenotypes were observed after dsTPS3 and dsTPSs injection. The relative expression levels of PGM2, G6PI2, Cht1-4, Cht6-10 and IDGF decreased significantly after 48 h of dsTPS3 injection. At 72 h after injection of dsTPS3, the relative expression levels of CHS1, Cht2, Cht4, Cht7 and Cht8 reduced significantly, but the expression levels of G6PI1, Cht5 and ENGase increased significantly. The relative expression levels of GFAT, UAP, PGM2, G6PI2, CHS1, CHS1a, CHS1b, Cht2, Cht4, Cht8, Cht9 and Cht10 decreased significantly after 48 h of dsTPSs injection. However, at 72 h after the injection of dsTPSs, the expression levels of GNPNA, UAP, PGM1, G6PI1, HK, CHS1, CHS1a, CHS1b, Cht3, Cht5, Cht7 and ENGase increased significantly. Finally, the chitin content decreased in dsTPS1, dsTPS2 and dsTPSs treatments. In conclusion, the inhibition of TPS expression affected the metabolism of trehalose and chitin in N. lugens. The related research results provide a theoretical basis for pest control.

摘要

褐飞虱(Nilaparvata lugens)是危害水稻的重要害虫之一。海藻糖-6-磷酸合酶(TPS)是催化海藻糖生物合成的关键酶,海藻糖是昆虫的能量物质。在本研究中,结合已报道的褐飞虱TPS1、TPS2以及新发现的TPS3,我们通过RNA干扰研究了TPS在几丁质代谢中的调控作用。首先,我们发现注射dsTPS3 48小时后,TRE1-1、TRE1-2和TRE2的相对表达水平显著升高,且TRE1的活性显著增强。其次,注射dsTPS3和dsTPSs后观察到异常和致死表型。注射dsTPS3 48小时后,PGM2、G6PI2、Cht1-4、Cht6-10和IDGF的相对表达水平显著降低。注射dsTPS3 72小时后,CHS1、Cht2、Cht4、Cht7和Cht8的相对表达水平显著降低,但G6PI1、Cht5和ENGase的表达水平显著升高。注射dsTPSs 48小时后,GFAT、UAP、PGM2、G6PI2、CHS1、CHS1a、CHS1b、Cht2、Cht4、Cht8、Cht9和Cht10的相对表达水平显著降低。然而,注射dsTPSs 72小时后,GNPNA、UAP、PGM1、G6PI1、HK、CHS1、CHS1a、CHS1b、Cht3、Cht5、Cht7和ENGase的表达水平显著升高。最后,dsTPS1、dsTPS2和dsTPSs处理中几丁质含量降低。综上所述,TPS表达的抑制影响了褐飞虱中海藻糖和几丁质的代谢。相关研究结果为害虫防治提供了理论依据。

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