首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Identification of Novel ARSB Genes Necessary for p-Benzoquinone Biosynthesis in the Larval Oral Secretion Participating in External Immune Defense in the Red Palm Weevil
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Identification of Novel ARSB Genes Necessary for p-Benzoquinone Biosynthesis in the Larval Oral Secretion Participating in External Immune Defense in the Red Palm Weevil

机译:鉴定在红棕榈象征中参与外部免疫防御的幼虫口腔分泌中对p-苯醌生物合成所需的新型ARSB基因

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摘要

External secretions, composed of a variety of chemical components, are among the most important traits that endow insects with the ability to defend themselves against predators, parasites, or other adversities, especially pathogens. Thus, these exudates play a crucial role in external immunity. Red palm weevil larvae are prolific in this regard, producing large quantities of p-benzoquinone, which is present in their oral secretion. Benzoquinone with antimicrobial activity has been proven to be an active ingredient and key factor for external immunity in a previous study. To obtain a better understanding of the genetic and molecular basis of external immune secretions, we identify genes necessary for p-benzoquinone synthesis. Three novel ARSB genes, namely, RfARSB-0311, RfARSB-11581, and RfARSB-14322, are screened, isolated, and molecularly characterized on the basis of transcriptome data. To determine whether these genes are highly and specifically expressed in the secretory gland, we perform tissue/organ-specific expression profile analysis. The functions of these genes are further determined by examining the antimicrobial activity of the secretions and quantification of p-benzoquinone after RNAi. All the results reveal that the ARSB gene family can regulate the secretory volume of p-benzoquinone by participating in the biosynthesis of quinones, thus altering the host’s external immune inhibitory efficiency.
机译:由各种化学成分组成的外部分泌物是赋予昆虫的最重要的特征是赋予捕食者,寄生虫或其他逆境,尤其是病原体的能力。因此,这些渗出物在外部免疫中发挥着至关重要的作用。在这方面,红棕榈威尔瓦尔幼虫是多产的,产生大量的对苯醌,其在口腔分泌中存在。已被证明具有抗微生物活性的苯醌是前一项研究中的外部免疫力的活性成分和关键因素。为了更好地了解外部免疫分泌物的遗传和分子基础,我们鉴定了对苯醌合成所需的基因。在转录组数据的基础上筛选,分离和分子表征了三种新的ARSB基因,即RFARSB-0311,RFARSB-11581和RFARSB-14322。为了确定这些基因是否在分泌腺中高度且特异性表达,我们进行组织/器官特异性表达谱分析。通过检查RNAi之后对P-苯醌的分泌和定量的抗微生物活性进行进一步确定这些基因的功能。所有结果表明,ARSB基因家族可以通过参与醌的生物合成来调节p-苯醌的分泌体积,从而改变宿主的外部免疫抑制效率。

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