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黄单胞菌AvrRxv效应蛋白的分子特性及其在抗性番茄植株中表达所决定的全基因组转录变化

Molecular properties of the Xanthomonas AvrRxv effector and global transcriptional changes determined by its expression in resistant tomato plants.

作者信息

Bonshtien Arale, Lev Atar, Gibly Avi, Debbie Paul, Avni Adi, Sessa Guido

机构信息

Department of Plant Sciences, Tel-Aviv University, 69978 Tel-Aviv, Israel.

出版信息

Mol Plant Microbe Interact. 2005 Apr;18(4):300-10. doi: 10.1094/MPMI-18-0300.

Abstract

The Xanthomonas campestris pv. vesicatoria avirulence gene AvrRxv specifies resistance on the tomato line Hawaii 7998 by interacting with three nondominant plant resistance genes. AvrRxv molecular properties that impinge on its avirulence activity were characterized and transcriptional changes caused by AvrRxv expression in resistant tomato plants were extensively examined. AvrRxv localized predominantly to the cytoplasm and possibly in association with plasma and nuclear membranes in both resistant and susceptible tomato plants. The AvrRxv cysteine protease catalytic core was found to be essential for host recognition, because introduction of mutations in this domain affected the ability of AvrRxv to elicit a hypersensitive response and the inhibition of bacterial growth in resistant plants. In addition, expression profiles were analyzed for approximately 8,600 tomato genes in resistant plants challenged with X. campestris pv. vesicatoria strains expressing wild-type AvrRxv or a catalytic core AvrRxv mutant. In all, 420 genes were identified as differentially modulated by the expression of a functional AvrRxv, including over 15 functional classes of proteins and a large number of transcription factors and signaling components. Findings of this study allow the development of new hypotheses about the molecular basis of recognition between AvrRxv and the corresponding resistance proteins, and set the stage for the dissection of signaling and cellular responses triggered in tomato plants by this avirulence factor.

摘要

野油菜黄单胞菌疮痂致病变种的无毒基因AvrRxv通过与三个非显性植物抗性基因相互作用,赋予番茄品系夏威夷7998抗性。对影响其无毒活性的AvrRxv分子特性进行了表征,并广泛研究了抗性番茄植株中AvrRxv表达引起的转录变化。在抗性和感病番茄植株中,AvrRxv主要定位于细胞质,可能与质膜和核膜相关联。发现AvrRxv半胱氨酸蛋白酶催化核心对于宿主识别至关重要,因为在该结构域引入突变会影响AvrRxv引发过敏反应的能力以及抑制抗性植株中细菌生长的能力。此外,分析了用表达野生型AvrRxv或催化核心AvrRxv突变体的野油菜黄单胞菌疮痂致病变种菌株攻击的抗性植株中约8600个番茄基因的表达谱。总共鉴定出420个基因受功能性AvrRxv表达的差异调节,包括超过15个功能类别的蛋白质以及大量转录因子和信号成分。本研究结果有助于提出关于AvrRxv与相应抗性蛋白之间识别分子基础的新假设,并为剖析该无毒因子在番茄植株中引发的信号传导和细胞反应奠定基础。

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