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α-DIOXYGENASE 1 在番茄和拟南芥中的表达有助于植物抵御蚜虫。

Expression of α-DIOXYGENASE 1 in tomato and Arabidopsis contributes to plant defenses against aphids.

机构信息

Department of Entomology, University of Arkansas, Fayetteville, AR, USA.

出版信息

Mol Plant Microbe Interact. 2013 Aug;26(8):977-86. doi: 10.1094/MPMI-01-13-0031-R.

Abstract

Plant α-dioxygenases (α-DOX) are fatty acid-hydroperoxidases that contribute to the synthesis of oxylipins, a diverse group of compounds primarily generated through oxidation of linoleic (LA) and linolenic acid (LNA). Oxylipins are implicated in plant signaling against biotic and abiotic stresses. We report here that the potato aphid (Macrosiphum euphorbiae) induces Slα-DOX1 but not Slα-DOX2 expression in tomato (Solanum lycopersicum). Slα-DOX1 upregulation by aphids does not require either jasmonic acid (JA) or salicylic acid (SA) accumulation, since tomato mutants deficient in JA (spr2, acx1) or SA accumulation (NahG) still show Slα-DOX1 induction. Virus-induced gene silencing of Slα-DOX1 enhanced aphid population growth in wild-type (WT) plants, revealing that Slα-DOX1 contributes to basal resistance to aphids. Moreover, an even higher percent increase in aphid numbers occurred when Slα-DOX1 was silenced in spr2, a mutant line characterized by elevated LA levels, decreased LNA, and enhanced aphid resistance as compared with WT. These results suggest that aphid reproduction is influenced by oxylipins synthesized from LA by Slα-DOX1. In agreement with our experiments in tomato, two independent α-dox1 T-DNA insertion mutant lines in Arabidopsis thaliana also showed increased susceptibility to the green peach aphid (Myzus persicae), indicating that the role α-DOX is conserved in other plant-aphid interactions.

摘要

植物 α-加氧酶(α-DOX)是脂肪酸氢过氧化物酶,有助于氧化亚麻酸(LA)和亚麻酸(LNA)生成氧化脂类,这是一组主要通过氧化产生的化合物。氧化脂类参与植物对生物和非生物胁迫的信号传递。我们在此报告,马铃薯蚜(Macrosiphum euphorbiae)诱导番茄(Solanum lycopersicum)中的 Slα-DOX1 表达,但不诱导 Slα-DOX2 表达。蚜虫诱导 Slα-DOX1 的上调既不需要茉莉酸(JA)也不需要水杨酸(SA)积累,因为 JA 缺乏型(spr2,acx1)或 SA 积累缺陷型(NahG)番茄突变体仍然显示 Slα-DOX1 诱导。Slα-DOX1 的病毒诱导基因沉默增强了野生型(WT)植物中的蚜虫种群生长,表明 Slα-DOX1 有助于对蚜虫的基础抗性。此外,在 spr2 中沉默 Slα-DOX1 时,蚜虫数量的增加甚至更高,spr2 是一种特征为 LA 水平升高、LNA 降低以及与 WT 相比增强的蚜虫抗性的突变体系。这些结果表明,蚜虫的繁殖受到由 Slα-DOX1 从 LA 合成的氧化脂类的影响。与我们在番茄中的实验一致,拟南芥中两个独立的α-dox1 T-DNA 插入突变体系也表现出对绿桃蚜(Myzus persicae)的敏感性增加,表明α-DOX 的作用在其他植物-蚜虫相互作用中是保守的。

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