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Comparing the defence-related gene expression changes upon root-knot nematode attack in susceptible versus resistant cultivars of rice

机译:比较水稻易感和抗病品种根结线虫攻击后防御相关基因表达的变化

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Rice is one of the major staple food crops in the world and an excellent model system for studying monocotyledonous plants. Diseases caused by nematodes in rice are well documented and among them, root-knot nematode (RKN), Meloidogyne graminicola, causes extensive yield decline. It is therefore necessary to identify novel sources of natural resistance to RKN in rice and to investigate the rice-RKN interaction in detail to understand the basal plant defence mechanisms and nematode manipulation of the host physiology. To this end, six different cultivars of rice were initially screened for RKN infection and development; Pusa 1121 and Vandana were found to be most susceptible and resistant to RKN infection, respectively. In order to investigate the role of major hormone-regulated plant defence pathways in compatible/incompatible rice-RKN interaction, some well-identified marker genes involved in salicylate/jasmonate/ethylene pathway were evaluated for their differential expression through qRT-PCR. In general, our study shows a remarkable discrepancy in the expression pattern of those genes between compatible and incompatible rice-RKN interaction. As most information on the molecular interplay between plants and nematodes were generated on dicotyledonous plants, the current study will strengthen our basic understanding of plant-nematode interaction in the monocot crops, which will aid in defining future strategies for best plant health measures.
机译:水稻是世界上主要的主粮作物之一,也是研究单子叶植物的优秀模型系统。水稻中由线虫引起的疾病已有充分文献记载,其中根结线虫(RKN),根结线虫(Meloidogyne graminicola)导致单产大幅下降。因此,有必要确定水稻对RKN的天然抗性的新来源,并详细研究水稻与RKN的相互作用,以了解基础植物的防御机制和线虫对宿主生理的操纵。为此,首先对六个不同的水稻品种进行了RKN感染和发育的筛选。发现Pusa 1121和Vandana分别对RKN感染最敏感和最有抵抗力。为了研究主要激素调节的植物防御途径在相容/不相容水稻-RKN相互作用中的作用,通过qRT-PCR评估了一些与水杨酸酯/茉莉酸酯/乙烯途径有关的标记基因的差异表达。总的来说,我们的研究表明,在兼容和不兼容的水稻-RKN相互作用之间,这些基因的表达方式存在显着差异。由于大多数有关植物和线虫之间分子相互作用的信息都是在双子叶植物上产生的,因此本研究将加强我们对单子叶植物中植物-线虫相互作用的基本了解,这将有助于确定最佳植物健康措施的未来策略。

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