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利用RNA干扰敲低两个海藻糖酶基因的表达会破坏东方粘虫的海藻糖和几丁质代谢途径。

Knockdown of the Expression of Two Trehalase Genes with RNAi Disrupts the Trehalose and Chitin Metabolism Pathways in the Oriental Armyworm, .

作者信息

Yang Hongjia, Wang Yixiao, Zhang Weijia, Zhang Xinxin, Wang Sibo, Cui Mengyao, Zhao Xiaohui, Fan Dong, Dai Changchun

机构信息

Department of Plant Protection, College of Plant Protection, Northeast Agricultural University, Harbin 150036, China.

出版信息

Insects. 2024 Feb 21;15(3):142. doi: 10.3390/insects15030142.

Abstract

Trehalose is an important carbohydrate substance in insect hemolymph. Chitin is the main component of cuticle and peritrophic matrix in insects. Trehalase (Tre) catalyzes the decomposition of trehalose. Few studies of trehalase in lepidopteran insects have been conducted. Here, the functions of soluble Tre (Tre1) and membrane-bound Tre (Tre2) in the growth and development of were investigated. We cloned and identified and cDNA sequences in . Analysis expression revealed that and were highly expressed in midgut and integument, respectively. The expression of and was highest in the pupal stage. We used RNA interference (RNAi) to inhibit expression in larvae. Injection of ds or ds resulted in abnormal phenotypes and impeded normal molting. Silencing of and resulted in significant changes in the expression of genes in the trehalose and chitin metabolism pathways, significantly increased the trehalose and glycogen content, and significantly decreased MsTre1 and MsTre2 activity, the glucose content, and the chitin content in midgut and integument. Silencing of slowed larval molting, and the new cuticle was significantly thinner. These results indicate that RNAi of may be useful for control strategies against .

摘要

海藻糖是昆虫血淋巴中的一种重要碳水化合物物质。几丁质是昆虫表皮和围食膜的主要成分。海藻糖酶(Tre)催化海藻糖的分解。目前对鳞翅目昆虫海藻糖酶的研究较少。在此,研究了可溶性Tre(Tre1)和膜结合Tre(Tre2)在[昆虫名称未给出]生长发育中的功能。我们克隆并鉴定了[昆虫名称未给出]中的[基因名称未给出]和[基因名称未给出] cDNA序列。分析表达情况发现,[基因名称未给出]和[基因名称未给出]分别在中肠和体壁中高表达。[基因名称未给出]和[基因名称未给出]的表达在蛹期最高。我们使用RNA干扰(RNAi)抑制[昆虫名称未给出]幼虫中的[基因名称未给出]表达。注射ds[基因名称未给出]或ds[基因名称未给出]导致异常表型并阻碍正常蜕皮。沉默[基因名称未给出]和[基因名称未给出]导致海藻糖和几丁质代谢途径中基因表达的显著变化,显著增加了海藻糖和糖原含量,并显著降低了中肠和体壁中的MsTre1和MsTre2活性、葡萄糖含量和几丁质含量。沉默[基因名称未给出]减缓了幼虫蜕皮,新表皮明显变薄。这些结果表明,对[基因名称未给出]进行RNA干扰可能有助于制定针对[昆虫名称未给出]的防治策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/485e/10971163/3dadf8b10999/insects-15-00142-g001.jpg

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