夜蛾
血淋巴
基因敲除
九氟化硫
生物
RNA沉默
核酸酶
中肠
RNA干扰
基因沉默
下调和上调
基因
遗传学
分子生物学
幼虫
植物
重组DNA
核糖核酸
作者
Xiaoyang Zhou,Jiaping Wei,Huichen Ge,Daojie Guan,Hai Li,Hainan Zhang,Yang Zheng,Kun Qian,Jianjun Wang
标识
DOI:10.1021/acs.jafc.3c08665
摘要
The lepidopteran-specific RNAi efficiency-related nuclease (REase) has been shown to contribute to double-strand RNA (dsRNA) degradation in several lepidopteran insects. However, little is known about its regulatory mechanism. In this study, we identified and characterized SfREase in Spodoptera frugiperda. The exposure of the third-instar larvae to dsEGFP and high temperature led to the upregulation of SfREase, whereas starvation treatment resulted in the downregulation of SfREase. Further experiments revealed that dsRNA degraded more slowly in the hemolymph or midgut fluid extracted from dsSfREase-injected or dsSfREase-ingested larvae compared with those from dsEGFP-treated larvae, and the recombinant SfREase degraded dsRNA in a concentration-dependent manner. Additionally, the knockdown of SfREase improved RNAi efficiency. Finally, both RNAi and dual-luciferase reporter assay in Sf9 cells revealed that SfREase is negatively regulated by FOXO. These data provide insights into the function and regulatory mechanism of REase and have applied implications for the development of an RNAi-based control strategy of S. frugiperda.
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