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PIF8-WRKY42介导的水杨酸合成调节红光诱导的厚皮甜瓜对白粉病的抗性。

PIF8-WRKY42-mediated salicylic acid synthesis modulates red light induced powdery mildew resistance in oriental melon.

作者信息

Wang Lixia, Wu Xutong, Xing Qiaojuan, Zhao Yaping, Yu Bo, Ma Yue, Wang Feng, Qi Hongyan

机构信息

College of Horticulture, Shenyang Agricultural University, Shenyang, China.

Key Laboratory of Protected Horticulture of Education of Ministry and Liaoning Province/National & Local Joint Engineering Research Center of Northern Horticultural Facilities Design & Application Technology, Shenyang, China.

出版信息

Plant Cell Environ. 2023 May;46(5):1726-1742. doi: 10.1111/pce.14560. Epub 2023 Feb 19.

Abstract

Light signals and plant hormones are involved in regulating the growth, development and stress resistance of plants; however, it remains unclear whether light affects hormones and thus pathogen resistance in oriental melon. Here, we found that red light promoted salicylic acid (SA) accumulation and powdery mildew resistance by activating the transcription of CmICS, the key gene for SA biosynthesis, and silencing CmICS seriously weakened the induction effect of red light on powdery mildew resistance in oriental melon leaves. Further studies showed that red light induced the expression of CmWRKY42 under powdery mildew stress, and CmWRKY42 directly bound to the CmICS promoter to activate its expression and promote the accumulation of SA under red light. Furthermore, we found that PHYTOCHROME INTERACTING FACTOR 8 (PIF8), as a negative regulator of SA biosynthesis, inhibits CmWRKY42 transcriptional activation by binding to the CmWRKY42 promoter, and thus inhibits transcriptional activation of CmICS by CmWRKY42. Also, CmPIF8 binds to the CmICS promoter and directly inhibits its transcription. In conclusion, our study revealed a new molecular mechanism of the relationship between red light-SA-powdery mildew resistance and provided a theoretical basis for resistance breeding of oriental melon.

摘要

光信号和植物激素参与调节植物的生长、发育和抗逆性;然而,光是否影响激素以及进而影响厚皮甜瓜的抗病性仍不清楚。在此,我们发现红光通过激活SA生物合成的关键基因CmICS的转录来促进水杨酸(SA)积累和白粉病抗性,而沉默CmICS会严重削弱红光对厚皮甜瓜叶片白粉病抗性的诱导作用。进一步研究表明,红光在白粉病胁迫下诱导CmWRKY42的表达,并且CmWRKY42直接结合到CmICS启动子上以激活其表达并促进红光下SA的积累。此外,我们发现光敏色素相互作用因子8(PIF8)作为SA生物合成的负调节因子,通过与CmWRKY42启动子结合来抑制CmWRKY42的转录激活,从而抑制CmWRKY42对CmICS的转录激活。而且,CmPIF8结合到CmICS启动子上并直接抑制其转录。总之,我们的研究揭示了红光 - SA - 白粉病抗性关系的新分子机制,并为厚皮甜瓜的抗性育种提供了理论依据。

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