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RNA干扰揭示昆虫几丁质酶家族基因间的功能特化

Functional specialization among insect chitinase family genes revealed by RNA interference.

作者信息

Zhu Qingsong, Arakane Yasuyuki, Beeman Richard W, Kramer Karl J, Muthukrishnan Subbaratnam

机构信息

Department of Biochemistry, Kansas State University, 141 Chalmers Hall, Manhattan, KS 66506, USA.

出版信息

Proc Natl Acad Sci U S A. 2008 May 6;105(18):6650-5. doi: 10.1073/pnas.0800739105. Epub 2008 Apr 24.

Abstract

The biological functions of individual members of the large family of chitinase-like proteins from the red flour beetle, Tribolium castaneum (Tc), were examined by using gene-specific RNAi. One chitinase, TcCHT5, was found to be required for pupal-adult molting only. A lethal phenotype was observed when the transcript level of TcCHT5 was down-regulated by injection of TcCHT5-specific dsRNA into larvae. The larvae had metamorphosed into pupae and then to pharate adults but did not complete adult eclosion. Specific knockdown of transcripts for another chitinase, TcCHT10, which has multiple catalytic domains, prevented embryo hatch, larval molting, pupation, and adult metamorphosis, indicating a vital role for TcCHT10 during each of these processes. A third chitinase-like protein, TcCHT7, was required for abdominal contraction and wing/elytra extension immediately after pupation but was dispensable for larval-larval molting, pupation, and adult eclosion. The wing/elytra abnormalities found in TcCHT7-silenced pupae were also manifest in the ensuing adults. A fourth chitinase-like protein, TcIDGF4, exhibited no chitinolytic activity but contributed to adult eclosion. No phenotypic effects were observed after knockdown of transcripts for several other chitinase-like proteins, including imaginal disk growth factor IDGF2. These data indicate functional specialization among insect chitinase family genes, primarily during the molting process, and provide a biological rationale for the presence of a large assortment of chitinase-like proteins.

摘要

利用基因特异性RNA干扰技术,对赤拟谷盗(Tribolium castaneum,Tc)几丁质酶样蛋白大家族中各个成员的生物学功能进行了研究。发现一种几丁质酶TcCHT5仅在蛹-成虫蜕皮过程中发挥作用。向幼虫注射TcCHT5特异性双链RNA使TcCHT5转录水平下调后,观察到致死表型。幼虫已变态为蛹,进而发育为隐成虫,但未能完成成虫羽化。另一种具有多个催化结构域的几丁质酶TcCHT10的转录本被特异性敲低后,胚胎孵化、幼虫蜕皮、化蛹及成虫变态均受阻,表明TcCHT10在这些过程中均起着至关重要的作用。第三种几丁质酶样蛋白TcCHT7在化蛹后立即参与腹部收缩及翅/鞘翅伸展,但对幼虫-幼虫蜕皮、化蛹及成虫羽化并非必需。在TcCHT7沉默的蛹中发现的翅/鞘翅异常在后续成虫中也有表现。第四种几丁质酶样蛋白TcIDGF4不具有几丁质分解活性,但对成虫羽化有作用。对包括成虫盘生长因子IDGF2在内的其他几种几丁质酶样蛋白的转录本进行敲低后,未观察到表型效应。这些数据表明昆虫几丁质酶家族基因存在功能特化现象,主要发生在蜕皮过程中,并为大量几丁质酶样蛋白的存在提供了生物学依据。

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