Quercetin induces pathogen resistance through the increase of salicylic acid biosynthesis in Arabidopsis.

Plant signaling & behavior Pub Date : 2023-12-31 Epub Date: 2023-10-30 DOI:10.1080/15592324.2023.2270835
Jonguk An, Sun Ho Kim, Sunghwa Bahk, Minh Le Anh Pham, Jaemin Park, Zakiyah Ramadany, Jeongwoo Lee, Jong Chan Hong, Woo Sik Chung
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Abstract

Quercetin is a flavonol belonging to the flavonoid group of polyphenols. Quercetin is reported to have a variety of biological functions, including antioxidant, pigment, auxin transport inhibitor and root nodulation factor. Additionally, quercetin is known to be involved in bacterial pathogen resistance in Arabidopsis through the transcriptional increase of pathogenesis-related (PR) genes. However, the molecular mechanisms underlying how quercetin promotes pathogen resistance remain elusive. In this study, we showed that the transcriptional increases of PR genes were achieved by the monomerization and nuclear translocation of nonexpressor of pathogenesis-related proteins 1 (NPR1). Interestingly, salicylic acid (SA) was approximately 2-fold accumulated by the treatment with quercetin. Furthermore, we showed that the increase of SA biosynthesis by quercetin was induced by the transcriptional increases of typical SA biosynthesis-related genes. In conclusion, this study strongly suggests that quercetin induces bacterial pathogen resistance through the increase of SA biosynthesis in Arabidopsis.

槲皮素通过增加拟南芥水杨酸生物合成来诱导病原体抗性。
槲皮素是一种黄酮醇,属于多酚类黄酮类。槲皮素具有多种生物学功能,包括抗氧化、色素、生长素转运抑制剂和根结瘤因子。此外,已知槲皮素通过发病机制相关(PR)基因的转录增加参与拟南芥的细菌病原体抗性。然而,槲皮素如何促进病原体抗性的分子机制仍然难以捉摸。在本研究中,我们发现PR基因的转录增加是通过发病机制相关蛋白1(NPR1)的非表达子的单体化和核转位实现的。有趣的是,水杨酸(SA)通过槲皮素处理积累了大约2倍。此外,我们发现槲皮素对SA生物合成的增加是由典型SA生物合成相关基因的转录增加诱导的。总之,本研究强烈表明槲皮素通过增加拟南芥SA生物合成来诱导细菌对病原体的抗性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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