首页> 美国卫生研究院文献>Journal of Insect Science >Identification and RNAi-Based Functional Analysis of Four Chitin Deacetylase Genes in Sogatella furcifera (Hemiptera: Delphacidae)
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Identification and RNAi-Based Functional Analysis of Four Chitin Deacetylase Genes in Sogatella furcifera (Hemiptera: Delphacidae)

机译:Sogatella Furcifera(Hemiptera:Delphacidae)四甲壳素脱乙酰酶基因鉴定和RNAi基官能分析

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摘要

Chitin deacetylases (CDAs) are chitin-degrading enzymes that play a key role in insect molting. In this study, we identified and characterized four full-length cDNAs of CDAs from Sogatella furcifera (Horváth). Developmental expression showed that SfCDA1 and SfCDA2 were expressed at all nymph developmental stages, SfCDA3 and SfCDA4 were mainly expressed in the third-instar to fifth-instar nymph stages, whereas tissue-specific analyses indicated that four CDA genes were mainly high expressed in the integument and head during the fifth-instar nymph. RNA interference (RNAi) results revealed that SfCDA1, SfCDA2, and SfCDA4 are associated with molting defect and high mortality with nymph–adult molting. Furthermore, transcripts of chitin synthase 1 variants (SfCHS1, SfCHS1a, and SfCHS1b) were significantly downregulated and causing significant changes in the expression levels of trehalases (TRE1 and TRE2) in the SfCDA1, SfCDA2, and SfCDA4 dsRNA treatment groups. By contrast, no significant phenotypic characteristics were observed after dsSfCDA3 injection. Taken together, our results suggest that SfCDA1, SfCDA2, and SfCDA4 play a vital role in nymph-adult transition, and these genes could regulate chitin biosynthesis expression levels.
机译:几丁质脱乙酰酶(CDAs)是甲壳素降解的酶,其在昆虫蜕皮中起关键作用。在这项研究中,我们鉴定并表征了来自Sogatella Furcifera(Horváth)的四个CDA的全长CDNA。发育表达表明,SFCDA1和SFCDA2在所有若虫发育阶段表达,SFCDA3和SFCDA4主要在第三瞬间表达至第五龄若虫阶段,而组织特异性分析表明,在整数中,四个CDA基因主要表达了四个CDA基因和头部在第五次龄若虫期间。 RNA干扰(RNAi)结果表明,SFCDA1,SFCDA2和SFCDA4与含氮缺陷和高死亡率有关。此外,几丁质合成酶1变体(SFCHS1,SFCHS1a和SFCHS1b)的转录物显着下调并在SFCDA1,SFCDA2和SFCDA4DSRNA治疗组中引起海绵酶(TRE1和TRE2)的显着变化。相比之下,DSSFCDA3注射后没有观察到显着的表型特征。我们的结果表明,SFCDA1,SFCDA2和SFCDA4在若虫 - 成人转变中发挥着至关重要的作用,这些基因可以调节几丁质生物合成表达水平。

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