Pegadaraju Venkatramana, Louis Joe, Singh Vijay, Reese John C, Bautor Jaqueline, Feys Bart J, Cook Graeme, Parker Jane E, Shah Jyoti
Division of Biology and Molecular Cellular and Developmental Biology Program, Kansas State University, Manhattan, KS 66506, USA.
Plant J. 2007 Oct;52(2):332-41. doi: 10.1111/j.1365-313X.2007.03241.x. Epub 2007 Aug 24.
Green peach aphid (GPA) Myzus persicae (Sülzer) is a phloem-feeding insect with an exceptionally wide host range. Previously, it has been shown that Arabidopsis thaliana PHYTOALEXIN DEFICIENT4 (PAD4), which is expressed at elevated levels in response to GPA infestation, is required for resistance to GPA in the Arabidopsis accession Columbia. We demonstrate here that the role of PAD4 in the response to GPA is conserved in Arabidopsis accessions Wassilewskija and Landsberg erecta. Electrical monitoring of aphid feeding behavior revealed that PAD4 modulates a phloem-based defense mechanism against GPA. GPA spends more time actively feeding from the sieve elements of pad4 mutants than from wild-type plants, and less time feeding on transgenic plants in which PAD4 is ectopically expressed. The activity of PAD4 in limiting phloem sap uptake serves as a deterrent in host-plant choice, and restricts aphid population size. In Arabidopsis defense against pathogens, all known PAD4 functions require its signaling and stabilizing partner EDS1 (ENHANCED DISEASE SUSCEPTIBILITY1). Bioassays with eds1 mutants alone or in combination with pad4 and with plants conditionally expressing PAD4 under the control of a dexamethasone-inducible promoter reveal that PAD4-modulated defense against GPA does not involve EDS1. Thus, a PAD4 mode of action that is uncoupled from EDS1 determines the extent of aphid feeding in the phloem.
桃蚜(GPA)烟蚜Myzus persicae(苏尔泽)是一种以韧皮部为食的昆虫,寄主范围异常广泛。此前研究表明,拟南芥中PHYTOALEXIN DEFICIENT4(PAD4)在受到GPA侵害时表达水平升高,在拟南芥生态型哥伦比亚中对GPA的抗性中发挥作用。我们在此证明,PAD4在对GPA的反应中的作用在拟南芥生态型瓦西列夫斯基和直立兰茨贝格中是保守的。对蚜虫取食行为的电生理监测表明,PAD4调节一种基于韧皮部的针对GPA的防御机制。与野生型植物相比,GPA从pad4突变体的筛管中积极取食的时间更长,而在异位表达PAD4的转基因植物上取食的时间更短。PAD4在限制韧皮部汁液摄取方面的活性在寄主植物选择中起到威慑作用,并限制蚜虫种群数量。在拟南芥对病原体的防御中,所有已知的PAD4功能都需要其信号传导和稳定伙伴EDS1(增强的疾病易感性1)。对eds1突变体单独或与pad4组合以及对在地塞米松诱导型启动子控制下条件性表达PAD4的植物进行的生物测定表明,PAD4介导的对GPA的防御不涉及EDS1。因此,一种与EDS1解偶联的PAD4作用模式决定了蚜虫在韧皮部的取食程度。