Effects of Inhibiting the Expression of Chitin Synthase Gene SfCHSB on the Metabolism of Trehalose and Chitin in Spodoptera frugiperda Larvae

甲壳素 海藻糖酶 中肠 几丁质合成酶 几丁质酶 夜蛾 海藻糖 生物化学 生物 微生物学 植物 基因 幼虫 壳聚糖 重组DNA
作者
Xiangyu Liu,Shasha Wang,Yuanyi Yu,Yisha Cheng,Chaoxing Hu,Min Zhou,Can Li,Bin Tang,Yan Wu
出处
期刊:Agriculture [Multidisciplinary Digital Publishing Institute]
卷期号:12 (12): 2019-2019 被引量:4
标识
DOI:10.3390/agriculture12122019
摘要

Spodoptera frugiperda is one of the world’s major agricultural pests and it occurs in many countries around the world. In Lepidoptera, the peritrophic membrane in the midgut protects the midgut epithelial cells and facilitates the digestion and absorption of food. Its main components are chitin and protein. Chitin synthase (CHS), as the last enzyme in the chitin biosynthesis pathway, is very important. Here, the expression of chitin synthase B (CHSB) gene identified from midgut was inhibited by RNA interference to explore its function in the metabolism of trehalose and chitin of S. frugiperda larvae. The results were as follows: SfCHSB was highly expressed in actively feeding larvae. Second, knockdown of SfCHSB resulted in decreased expression of most genes involved in chitin metabolism, including chitinase, and abnormal phenotypes of S. frugiperda were observed. In addition, membrane-bound trehalase activity and glucose content increased, and trehalose content decreased at 24 h after dsSfCHSB injection. Trehalase activities increased significantly and the glycogen content decreased at 48 h after dsSfCHSB injection. Finally, the activity of chitinase decreased and the content of chitin increased significantly. Our results indicate that SfCHSB expression is specific, SfCHSB has a large role in regulating chitin metabolism, and it has broad application prospects in the biocontrol of S. frugiperda.

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