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首页> 外文期刊>biomolecules >Knockdown of Two Trehalase Genes by RNA Interference Is Lethal to the White-Backed Planthopper Sogatella furcifera (Horvath) (Hemiptera: Delphacidae)
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Knockdown of Two Trehalase Genes by RNA Interference Is Lethal to the White-Backed Planthopper Sogatella furcifera (Horvath) (Hemiptera: Delphacidae)

机译:通过RNA干扰敲低两个海藻酶基因对白背飞虱Sogatella furcifera(Horvath)(半翅目:Delphacidae)是致命的

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摘要

Trehalase (Tre) is a crucial enzyme involved in trehalose metabolism, and it plays pivotal roles in insect development and metamorphosis. However, the biological function of Tre genes in Sogatella furcifera remains unclear. In the present study, two Tre genes-SfTre1 and SfTre2-were cloned and identified based on the S. furcifera transcriptome data. Bioinformatic analysis revealed that the full-length complementary DNA of SfTre1 and SfTre2 genes were 3700 and 2757 bp long, with 1728- and 1902-bp open reading frame encoding 575 and 633 amino acid residues, respectively. Expression analysis indicated that SfTre1 and SfTre2 were expressed at all developmental stages, with the highest expression in day two adults. Furthermore, the highest expression levels of SfTre1 and SfTre2 were observed in the ovary; enriched expression was also noted in head tissues. The knockdown of SfTre1 and SfTre2 via injecting double-stranded RNAs decreased the transcription levels of the corresponding mRNAs and led to various malformed phenotypes and high lethality rates. The results of our present study indicate that SfTre1 and SfTre2 play crucial roles in S. furcifera growth and development, which can provide referable information for Tre genes as a potential target for planthopper control.
机译:海藻糖酶(Tre)是一种参与海藻糖代谢的关键酶,在昆虫发育和中起着举足轻重的作用。然而,Tre基因在Sogatella furcifera中的生物学功能仍不清楚。本研究基于S. furcifera转录组数据克隆鉴定了2个Tre基因SfTre1和SfTre2。生物信息学分析显示,SfTre1和SfTre2基因的全长互补DNA长3700和2757 bp,1728和1902 bp的开放阅读框分别编码575个和633个氨基酸残基。表达分析表明,SfTre1和SfTre2在所有发育阶段均有表达,在成虫第2天表达最高。此外,SfTre1和SfTre2在卵巢中的表达水平最高;在头部组织中也观察到富集表达。通过注射双链RNA敲低SfTre1和SfTre2降低了相应mRNA的转录水平,并导致了各种畸形表型和高致死率。本研究结果表明,SfTre1和SfTre2在飞虱生长发育中起着至关重要的作用,可为飞虱基因作为防治飞虱的潜在靶点提供参考信息。

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