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敲低 Tudor 会破坏桔小实蝇的卵巢发育。

Tudor knockdown disrupts ovary development in Bactrocera dorsalis.

作者信息

Xie Y-F, Shang F, Ding B-Y, Wu Y-B, Niu J-Z, Wei D, Dou W, Christiaens O, Smagghe G, Wang J-J

机构信息

Key Laboratory of Entomology and Pest Control Engineering, College of Plant Protection, Southwest University, Chongqing, China.

Hunan Academy of Forestry, Changsha, China.

出版信息

Insect Mol Biol. 2019 Feb;28(1):136-144. doi: 10.1111/imb.12533. Epub 2018 Oct 17.

Abstract

One of the main functions of the piwi-interacting RNA pathway is the post-transcriptional silencing of transposable elements in the germline of many species. In insects, proteins belonging to the Tudor superfamily proteins belonging to the Tudor superfamily play an important role in to play an important role in this mechanism. In this study, we identified the tudor gene in the oriental fruit fly, Bactrocera dorsalis, investigated the spatiotemporal expressional profile of the gene, and performed a functional analysis using RNA interference. We identified one transcript for a tudor homologue in the B. dorsalis transcriptome, which encodes a protein containing the typical 10 Tudor domains and an Adenosine triphosphate (ATP) synthase delta subunit signature. Phylogenetic analysis confirmed the identity of this transcript as a tudor homologue in this species. The expression profile indicated a much higher expression in the adult and pupal stages compared to the larval stages (up to a 60-fold increase), and that the gene was mostly expressed in the ovaries, Malpighian tubules and fat body. Finally, gene knockdown of tudor in B. dorsalis led to clearly underdeveloped ovaries in the female adult and reductions in copulation rate and amount of oviposition, indicating its important role in reproduction. The results of this study shed more light on the role of tudor in ovary development and reproduction.

摘要

与Piwi相互作用RNA途径的主要功能之一是在许多物种的生殖系中转座元件的转录后沉默。在昆虫中,属于Tudor超家族的蛋白质在这一机制中发挥重要作用。在本研究中,我们鉴定了东方果实蝇(橘小实蝇)中的tudor基因,研究了该基因的时空表达谱,并使用RNA干扰进行了功能分析。我们在橘小实蝇转录组中鉴定出一个tudor同源物的转录本,它编码一种含有典型的10个Tudor结构域和一个三磷酸腺苷(ATP)合酶δ亚基特征的蛋白质。系统发育分析证实了该转录本在该物种中作为tudor同源物的身份。表达谱表明,与幼虫阶段相比,成虫和蛹期的表达要高得多(高达60倍),并且该基因主要在卵巢、马氏管和脂肪体中表达。最后,橘小实蝇中tudor基因的敲低导致雌性成虫卵巢明显发育不全,交配率和产卵量降低,表明其在生殖中的重要作用。本研究结果进一步揭示了tudor在卵巢发育和生殖中的作用。

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