Pan Bi-Ying, Liu Yong-Kang, Wu Hong-Kai, Pang Xiao-Qing, Wang Shi-Gui, Tang Bin, Xu Cai-Di
1College of Life and Environmental Sciences, Hangzhou Normal University, Hangzhou, 310036 Zhejiang People's Republic of China.
2College of Education, Hangzhou Normal University, Hangzhou, 310036 Zhejiang People's Republic of China.
3 Biotech. 2020 Feb;10(2):61. doi: 10.1007/s13205-020-2053-5. Epub 2020 Jan 23.
Phosphoglucomutase (PGM) is a key enzyme in glycolysis and gluconeogenesis, regulating both glycogen and trehalose metabolism in insects. In this study, we explored the potential function of phosphoglucomutase (PGM) using RNA interference technology in , the brown planthopper. and were found highly expressed in the midgut of brown planthoppers, with different expression levels in different instar nymphs. The glycogen, glucose, and trehalose levels were also significantly increased after brown planthoppers were injected with dsRNA targeting PGM1 (dsPGM1) or PGM2 (dsPGM2). In addition, injection of dsPGM1 or dsPGM2 resulted in increased membrane-bound trehalase activity but not soluble trehalase activity. Furthermore, the expression of genes related to trehalose and glycogen metabolism decreased significantly after injection with dsPGM1 and dsPGM2. The expression levels of genes involved in chitin metabolism in the brown planthopper were also significantly decreased and the insects showed wing deformities and difficulty molting following RNAi. We suggest that silencing of PGM1 and PGM2 expression directly inhibits trehalose metabolism, leading to impaired chitin synthesis.
磷酸葡萄糖变位酶(PGM)是糖酵解和糖异生过程中的关键酶,在昆虫体内调节糖原和海藻糖的代谢。在本研究中,我们利用RNA干扰技术在褐飞虱中探究了磷酸葡萄糖变位酶(PGM)的潜在功能。发现Pgml和Pg m2在褐飞虱中肠高度表达,在不同龄期若虫中的表达水平有所不同。在向褐飞虱注射靶向PGM1(dsPGM1)或PGM2(dsPGM2)的dsRNA后,糖原、葡萄糖和海藻糖水平也显著升高。此外,注射dsPGM1或dsPGM2导致膜结合海藻糖酶活性增加,但可溶性海藻糖酶活性未增加。此外,注射dsPGM1和dsPGM2后,与海藻糖和糖原代谢相关的基因表达显著下降。褐飞虱中参与几丁质代谢的基因表达水平也显著下降,RNA干扰后昆虫出现翅畸形和蜕皮困难。我们认为,沉默PGM1和PGM2的表达直接抑制海藻糖代谢,导致几丁质合成受损。