Chinnapandi Bharathiraja, Bucki Patricia, Braun Miyara Sigal
a Department of Entomology and the Nematology and Chemistry Units , Agricultural Research Organization (ARO), the Volcani Center , Rishon Lezion , Israel.
Plant Signal Behav. 2017 Dec 2;12(12):e1356530. doi: 10.1080/15592324.2017.1356530.
The fluctuation of tomato's WRKY defense regulators during infection by the root knot nematode Meloidogyne javanica was analyzed: and the spatial and temporal expression of SlWRKY45 was studied in depth with regard to its response to nematode infection, phytohormones, and wounding. Expression of WRKY45 increased substantially within 5 d upon infection and continued through feeding-site development and gall maturation. Histological analysis of nematode feeding sites indicated that WRKY45 was highly expressed within the feeding cells and associated vascular parenchyma cells. Responses of SlWRKY45 promoters to several phytohormones showed that WRKY45 was highly induced by specific phytohormones, including cytokinin, auxin, and the defense-signaling molecule salicylic acid (SA), but not by the jasmonates. Overexpressing tomato lines were generated, and infection tests showed that, significantly, roots over-expressing SlWRKY45 contained substantially increased number of females, indicating that WRKY45 overexpression supported faster nematode development. qRT-PCR tests have shown roots overexpressing WRKY45 suppressed the jasmonic acid and salicylic acid marker genes, proteinase inhibitor (PI), and pathogenesis related protein (PR1), respectively, and also the cytokinin response factors CRF1 and CRF6. Overall, this study indicated SlWRKY45 to be a potential transcription factor whose manipulation by the invading nematode might be critical for coordination of hormone signals supporting favorable condition for nematode development in root tissue.
分析了番茄WRKY防御调节因子在爪哇根结线虫感染过程中的波动情况,并深入研究了SlWRKY45在响应线虫感染、植物激素和创伤时的时空表达。WRKY45的表达在感染后5天内大幅增加,并在取食位点发育和虫瘿成熟过程中持续增加。对线虫取食位点的组织学分析表明,WRKY45在取食细胞和相关的维管束薄壁细胞中高度表达。SlWRKY45启动子对几种植物激素的反应表明,WRKY45受到特定植物激素的高度诱导,包括细胞分裂素、生长素和防御信号分子水杨酸(SA),但不受茉莉酸酯的诱导。构建了过表达番茄株系,感染试验表明,显著地,过表达SlWRKY45的根中雌虫数量大幅增加,这表明WRKY45的过表达促进了线虫更快的发育。qRT-PCR试验表明,过表达WRKY45的根分别抑制了茉莉酸和水杨酸标记基因、蛋白酶抑制剂(PI)和病程相关蛋白(PR1),以及细胞分裂素反应因子CRF1和CRF6。总体而言,这项研究表明SlWRKY45是一种潜在的转录因子,入侵线虫对其的操控可能对于协调激素信号以支持根组织中线虫发育的有利条件至关重要。