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不同玉米品系在茉莉酸甲酯处理和玉米根萤叶甲侵害下的蛋白质谱分析及TPS23诱导

Protein profiling and tps23 induction in different maize lines in response to methyl jasmonate treatment and Diabrotica virgifera infestation.

作者信息

Capra Emanuele, Colombi Cinzia, De Poli Pamela, Nocito Fabio Francesco, Cocucci Maurizio, Vecchietti Alberto, Marocco Adriano, Stile Maria Rosaria, Rossini Laura

机构信息

Istituto di Biologia e Biotecnologia Agraria Consiglio Nazionale delle Ricerche IBBA-CNR, via Einstein, 26900 Lodi, Italy; Biotrack S.r.l., Parco Tecnologico Padano, via Einstein, 26900 Lodi, Italy.

Parco Tecnologico Padano, via Einstein, 26900 Lodi, Italy.

出版信息

J Plant Physiol. 2015 Mar 1;175:68-77. doi: 10.1016/j.jplph.2014.10.018. Epub 2014 Nov 27.

Abstract

Plant responses to herbivore insects involve direct and indirect defense with the production of signal molecules including jasmonic acid (JA) and its derivatives (e.g. methyl jasmonate, MeJA). In maize (Zea mays), root feeding by Diabrotica virgifera larvae activates an indirect defense mechanism, through enthomopathogenic nematodes that are recruited after Terpene Synthase 23 (tps23) upregulation and (E)-β-caryophyllene root emission. In order to gain insight into the correlation between JA signaling and response to Diabrotica attack, we analyzed tps23 expression and protein profiles in maize roots in response to MeJA treatment and insect infestation. Similar to herbivore feeding, MeJA treatment was found to increase tps23 transcript accumulation, with consistent variations for both treatments in maize lines differing in (E)-β-caryophyllene production. Analysis of root protein profiles showed specific alterations leading to the identification of three proteins that were induced by MeJA treatment. We focused on a peroxidase-like protein (Px-like) showing that the corresponding transcripts accumulated in all tested lines. Results show that exogenous application of MeJA upregulates tps23 expression and specifically alters protein patterns in maize roots. Parallel effects on tps23 transcript accumulation were observed upon hormone exposure and insect infestation in different maize lines. In contrast, Px-like transcript profiling showed differences between treatments. These results support the possible involvement of MeJA in mediating the upregulation of tps23 in response to Diabrotica attack.

摘要

植物对食草昆虫的反应包括直接防御和间接防御,会产生包括茉莉酸(JA)及其衍生物(如茉莉酸甲酯,MeJA)在内的信号分子。在玉米(Zea mays)中,暗黑鳃金龟幼虫啃食根部会激活一种间接防御机制,即通过萜烯合酶23(tps23)上调和(E)-β-石竹烯根部释放后招募的昆虫病原线虫来实现。为了深入了解JA信号传导与对暗黑鳃金龟攻击反应之间的相关性,我们分析了玉米根中tps23的表达和蛋白质谱,以响应MeJA处理和昆虫侵染。与食草动物取食相似,发现MeJA处理会增加tps23转录本的积累,在(E)-β-石竹烯产量不同的玉米品系中,两种处理的变化一致。对根蛋白质谱的分析显示出特定的变化,从而鉴定出三种由MeJA处理诱导的蛋白质。我们重点研究了一种过氧化物酶样蛋白(Px样),结果表明相应的转录本在所有测试品系中都有积累。结果表明,外源施用MeJA会上调tps23的表达,并特异性改变玉米根中的蛋白质模式。在不同玉米品系中,激素处理和昆虫侵染对tps23转录本积累有相似的影响。相比之下,Px样转录本分析显示处理之间存在差异。这些结果支持MeJA可能参与介导tps23对暗黑鳃金龟攻击的上调反应。

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