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RNA干扰介导的假定saccharopine脱氢酶敲低导致褐飞虱(Nilaparvata lugens (Stål),半翅目:飞虱科)蜕皮异常。

RNA interference-aided knockdown of a putative saccharopine dehydrogenase leads to abnormal ecdysis in the brown planthopper, Nilaparvata lugens (Stål) (Hemiptera: Delphacidae).

作者信息

Wan P-J, Yang L, Yuan S-Y, Tang Y-H, Fu Q, Li G-Q

机构信息

State Key Laboratory of Rice Biology,China National Rice Research Institute,Hangzhou 310006,China.

Education Ministry Key Laboratory of Integrated Management of Crop Diseases and Pests,College of Plant Protection,Nanjing Agricultural University,Nanjing 210095,China.

出版信息

Bull Entomol Res. 2015 Aug;105(4):390-8. doi: 10.1017/S0007485315000231. Epub 2015 Apr 24.

Abstract

The brown planthopper Nilaparvata lugens is a serious phloem-feeding pest of rice in China. The current study focuses on a saccharopine dehydrogenase (SDH) that catalyzes the penultimate reaction in biosynthesis of the amino acid lysine (Lys), which plays a role in insect growth and carnitine production (as a substrate). The protein, provisionally designated as NlylsSDH [a SDH derived from yeast-like symbiont (YLS) in N. lugens], had a higher transcript level in abdomens, compared with heads, wings, legs and thoraces, which agrees with YLS distribution in N. lugens. Ingestion of Nlylssdh targeted double-stranded RNA (dsNlylssdh) for 5, 10 and 15 days decreased the mRNA abundance in the hoppers by 47, 70 and 31%, respectively, comparing with those ingesting normal or dsegfp diets. Nlylssdh knockdown slightly decreased the body weights, significantly delayed the development of females, and killed approximately 30% of the nymphs. Moreover, some surviving adults showed two apparent phenotypic defects: wing deformation and nymphal cuticles remained on tips of the legs and abdomens. The brachypterours/macropterours and sex ratios (female/male) of the adults on the dsRNA diet were lowered compared with the adults on diets without dsRNA. These results suggest that Nlylssdh encodes a functional SDH protein. The adverse effect of Nlylssdh knockdown on N. lugens implies the importance of Lys in hopper development. This study provides a proof of concept example that Nlylssdh could serve as a possible dsRNA-based pesticide for planthopper control.

摘要

褐飞虱(Nilaparvata lugens)是中国水稻上一种严重的吸食韧皮部的害虫。当前的研究聚焦于一种saccharopine脱氢酶(SDH),它催化氨基酸赖氨酸(Lys)生物合成中的倒数第二个反应,Lys在昆虫生长和肉碱产生(作为一种底物)中发挥作用。该蛋白暂命名为NlylsSDH[一种源自褐飞虱中酵母样共生体(YLS)的SDH],与头部、翅膀、腿部和胸部相比,其在腹部的转录水平更高,这与YLS在褐飞虱中的分布一致。与摄取正常或dsegfp饲料的褐飞虱相比,摄取靶向Nlylssdh的双链RNA(dsNlylssdh)5天、10天和15天分别使褐飞虱体内的mRNA丰度降低了47%、70%和31%。敲低Nlylssdh轻微降低了体重,显著延迟了雌虫的发育,并杀死了约30%的若虫。此外,一些存活的成虫表现出两个明显的表型缺陷:翅膀变形以及腿部和腹部末端残留若虫表皮。与未摄取dsRNA饲料的成虫相比,摄取dsRNA饲料的成虫的短翅型/长翅型比例和性别比(雌/雄)降低。这些结果表明Nlylssdh编码一种功能性SDH蛋白。敲低Nlylssdh对褐飞虱的不利影响暗示了Lys在褐飞虱发育中的重要性。本研究提供了一个概念验证实例,即Nlylssdh可作为一种基于dsRNA的可能用于防治飞虱的杀虫剂。

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