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依赖Brummer的脂质动员调节褐飞虱的饥饿抗性。

Brummer-dependent lipid mobilization regulates starvation resistance in Nilaparvata lugens.

作者信息

Zhou Jinming, Chen Xia, Yan Jing, You Keke, Yuan Zhineng, Zhou Qiang, Lu Kai

机构信息

State Key Laboratory of Biocontrol, School of Life Sciences, Sun Yat-sen University, Guangzhou, P.R. China.

College of Life Sciences, Fujian Agriculture and Forestry University, Fuzhou, P.R. China.

出版信息

Arch Insect Biochem Physiol. 2018 Oct;99(2):e21481. doi: 10.1002/arch.21481. Epub 2018 Jun 28.

Abstract

Energy homeostasis is an essential characteristic of all organisms, requiring fluctuation in energy accumulation, mobilization, and exchange with the external environment. In insects, energy mobilization is under control of the lipase brummer (bmm), which regulates nutritional status by hydrolyzing the ester bonds in triacylglycerol (TAG). In the present study, we investigated the role of bmm in the lipid mobilization and starvation resistance in the brown planthopper (BPH; Nilaparvata lugens), which is economically one of the most important rice pests in Asia. A severe decrease in TAG and glyceride contents was observed in the starved BPHs, while there was a partial rescue after refeeding. The starvation condition caused a significant increase in the expression levels of Nlbmm, and supplement of food after starvation dramatically reduced the Nlbmm expression. Sucrose rescue after starvation significantly suppressed the expression of Nlbmm, while caused an accumulation of TAG and glyceride. Knockdown of Nlbmm by double-stranded RNA treatment extended the lifespan to starvation, whereas it increased the level of TAG and glyceride in the BPHs. The decreased lipolysis rate by dsNlbmm-treated BPHs eventually resulted in increase of starvation resistance. These data demonstrated that the regulation of energy homeostasis by Nlbmm affects starvation resistance, probably through lipid mobilization control in N. lugens.

摘要

能量稳态是所有生物体的一个基本特征,需要能量积累、动员以及与外部环境交换方面的波动。在昆虫中,能量动员受脂肪酶brummer(bmm)的控制,该酶通过水解三酰甘油(TAG)中的酯键来调节营养状态。在本研究中,我们调查了bmm在褐飞虱(BPH;Nilaparvata lugens)脂质动员和抗饥饿能力中的作用,褐飞虱是亚洲经济上最重要的水稻害虫之一。在饥饿的褐飞虱中观察到TAG和甘油酯含量大幅下降,而重新喂食后有部分恢复。饥饿状态导致Nlbmm表达水平显著增加,饥饿后补充食物显著降低了Nlbmm表达。饥饿后蔗糖补充显著抑制了Nlbmm的表达,同时导致TAG和甘油酯积累。通过双链RNA处理敲低Nlbmm可延长褐飞虱在饥饿状态下的寿命,而这增加了褐飞虱体内TAG和甘油酯的水平。经dsNlbmm处理的褐飞虱脂解速率降低最终导致抗饥饿能力增强。这些数据表明,Nlbmm对能量稳态的调节可能通过控制褐飞虱的脂质动员来影响抗饥饿能力。

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