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Pathogen-Responsive Expression of Glycosyltransferase Genes UGT73B3 and UGT73B5 Is Necessary for Resistance to Pseudomonas syringae pv tomato in Arabidopsis

机译:糖基转移酶基因UGT73B3和UGT73B5的病原反应表达是拟南芥对丁香假单胞菌PV番茄的抗性所必需的。

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摘要

The genome sequencing of Arabidopsis (Arabidopsis thaliana) has revealed that secondary metabolism plant glycosyltransferases (UGTs) are encoded by an unexpectedly large multigenic family of 120 members. Very little is known about their actual function in planta, in particular during plant pathogen interactions. Among them, members of the group D are of particular interest since they are related to UGTs involved in stress-inducible responses in other plant species. We provide here a detailed analysis of the expression profiles of this group of Arabidopsis UGTs following infection with Pseudomonas syringae pv tomato or after treatment with salicylic acid, methyljasmonate, and hydrogen peroxide. Members of the group D displayed distinct induction profiles, indicating potential roles in stress or defense responses notably for UGT73B3 and UGT73B5. Analysis of UGT expression in Arabidopsis defense-signaling mutants further revealed that their induction is methyljasmonate independent, but partially salicylic acid dependent. T-DNA tagged mutants (ugt73b3 and ugt73b5) exhibited decreased resistance to P. syringae pv tomato-AvrRpm1, indicating that expression of the corresponding UGT genes is necessary during the hypersensitive response. These results emphasize the importance of plant secondary metabolite UGTs in plant-pathogen interactions and provide foundation for future understanding of the exact role of UGTs during the hypersensitive response.
机译:拟南芥(Arabidopsis thaliana)的基因组测序表明,次级代谢植物糖基转移酶(UGT)由一个意想不到的大型120个成员的多基因家族编码。关于它们在植物中的实际功能,特别是在植物病原体相互作用期间的实际功能知之甚少。其中,D组成员特别受关注,因为它们与参与其他植物物种胁迫诱导反应的UGT有关。我们在此提供了该类拟南芥UGT在感染丁香假单胞菌PV番茄后或用水杨酸,茉莉酸甲酯和过氧化氢处理后的表达谱的详细分析。 D组的成员显示出不同的诱导概况,表明在应激或防御反应中的潜在作用,特别是对于UGT73B3和UGT73B5。对拟南芥防御信号突变体中UGT表达的分析进一步表明,其诱导是茉莉酸甲酯独立的,但部分水杨酸依赖性的。 T-DNA标记的突变体(ugt73b3和ugt73b5)表现出对丁香假单胞菌pv番茄-AvrRpm1的抗性降低,表明在超敏反应期间必须表达相应的UGT基因。这些结果强调了植物次生代谢物UGT在植物与病原体相互作用中的重要性,并为以后了解UGT在超敏反应中的确切作用提供了基础。

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