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白蛾,烟粉虱可溶性和膜结合海藻糖酶的分子特征。

Molecular characterization of soluble and membrane-bound trehalases of the whitefly, Bemisia tabaci.

机构信息

Ministry of Agriculture Key Laboratory of Agricultural Entomology, Institute of Insect Sciences, Zhejiang University, Hangzhou, China; Institute of Entomology, College of Plant Protection, Southwest University, Chongqing, China.

出版信息

Arch Insect Biochem Physiol. 2014 Apr;85(4):216-33. doi: 10.1002/arch.21155. Epub 2014 Mar 9.

Abstract

Trehalases (Tres) have been demonstrated to be the key enzymes that are involved in various trehalose-associated physiological processes in insects. However, little attention has been devoted to the Tres in the whitefly, Bemisia tabaci. In this study, a soluble Tre (BtTre-1) and a membrane-bound Tre (BtTre-2) were cloned in the invasive cryptic species Middle East-Asia Minor 1 (MEAM1) of the whitefly B. tabaci complex. Alignment of deduced amino acids sequences of both BtTres revealed that they share common consensus regions and residues with Tres of other insect species. Levels of BtTres expression in various stages and tissues of the whitefly suggested that BtTre-2 may play a key role in trehalose catabolism during development of the whitefly, especially for oocyte development, while BtTre-1 may prevent trehalose in salivary gland from leaking and entering into plants along with saliva. Potential roles of trehalose catabolism in response to direct and/or plant-mediated indirect effects of Tomato Yellow Leaf Curl China Virus (TYLCCNV) were also detected. Whiteflies feeding on virus-infected tobacco plants showed higher BtTres expressions and accordingly higher BtTres activity but lower trehalose content than those feeding on uninfected plants. The enhanced trehalose catabolism may be beneficial to oocyte development in ovary and attenuate plant defensive responses induced by trehalose in saliva. Viruliferous and nonviruliferous whiteflies feeding on cotton, a nonhost plant for TYLCCNV, differed significantly only in trehalose content. The higher trehalose content in viruliferous whiteflies may be conducive to resisting the stress inflicted by TYLCCNV.

摘要

海藻糖酶(Tres)已被证明是参与昆虫中各种海藻糖相关生理过程的关键酶。然而,人们对烟粉虱(Bemisia tabaci)中的 Tres 关注甚少。在这项研究中,从烟粉虱复合种中东-小亚细亚 1 型(MEAM1)中克隆了一种可溶性 Tre(BtTre-1)和一种膜结合 Tre(BtTre-2)。两种 BtTres 推导的氨基酸序列的比对表明,它们与其他昆虫物种的 Tres 具有共同的保守区域和残基。烟粉虱各发育阶段和组织中 BtTres 的表达水平表明,BtTre-2 可能在烟粉虱发育过程中(尤其是卵母细胞发育过程中)在海藻糖分解代谢中发挥关键作用,而 BtTre-1 可能防止唾液腺中的海藻糖随唾液一起泄漏并进入植物。还检测到海藻糖分解代谢在应对番茄黄曲叶病毒(TYLCCNV)直接和/或植物介导的间接影响中的潜在作用。取食感染病毒烟草植物的烟粉虱表现出更高的 BtTres 表达水平,相应地具有更高的 BtTres 活性,但海藻糖含量低于取食未感染植物的烟粉虱。增强的海藻糖分解代谢可能有利于卵巢中卵母细胞的发育,并减轻唾液中海藻糖诱导的植物防御反应。取食非宿主植物棉花的带毒和不带毒烟粉虱在海藻糖含量上存在显著差异。带毒烟粉虱中较高的海藻糖含量可能有利于抵抗 TYLCCNV 造成的压力。

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