CmPIF8-CmERF27-CmACS10 介导的乙烯生物合成调节红光诱导的东方甜瓜白粉病抗性。

IF 6 1区 生物学 Q1 PLANT SCIENCES Plant, Cell & Environment Pub Date : 2024-11-01 Epub Date: 2024-06-24 DOI:10.1111/pce.15015
Xutong Wu, Lixia Wang, Qiaojuan Xing, Yaping Zhao, Hongyan Qi
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引用次数: 0

摘要

白粉病是甜瓜保护地栽培中的一种严重真菌病害,影响甜瓜植株的生长、发育和产量。以往的研究表明,红光可以提高甜瓜幼苗对白粉病的抗性。在此,我们发现在接种引起白粉病的真菌病原体 Podosphaera xanthii 后,红光预处理增加了乙烯的产生,从而提高了甜瓜幼苗对白粉病的抗性,而乙烯生物合成基因 CmACS10 在此过程中发挥了重要作用。通过分析 CmACS10 启动子,筛选酵母单杂交文库,发现 CmERF27 能正向调控 CmACS10 的表达,提高白粉病抗性,并在蛋白水平上与 PHYTOCHROME INTERACTING FACTOR8(CmPIF8)相互作用,参与调控乙烯的生物合成,以响应红光诱导的对 P. xanthii 的抗性。此外,CmPIF8 还直接靶向 CmACS10 的启动子,负向参与了这一过程。综上所述,该研究揭示了CmPIF8-CmERF27-CmACS10模块调控红光诱导乙烯生物合成以抵抗黄皮病菌侵染的特异机制,阐明了生物胁迫下光与植物激素之间的相互作用,为抗病甜瓜植株的育种提供了参考和遗传资源。
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CmPIF8-CmERF27-CmACS10-mediated ethylene biosynthesis modulates red light-induced powdery mildew resistance in oriental melon.

Powdery mildew is a serious fungal disease in protected melon cultivation that affects the growth, development and production of melon plants. Previous studies have shown that red light can improve oriental melon seedlings resistance to powdery mildew. Here, after inoculation with Podosphaera xanthii, an obligate fungal pathogen eliciting powdery mildew, we found that red light pretreatment increased ethylene production and this improved the resistance of melon seedlings to powdery mildew, and the ethylene biosynthesis gene CmACS10 played an important role in this process. By analysing the CmACS10 promoter, screening yeast one-hybrid library, it was found that CmERF27 positively regulated the expression of CmACS10, increased powdery mildew resistance and interacted with PHYTOCHROME INTERACTING FACTOR8 (CmPIF8) at the protein level to participate in the regulation of ethylene biosynthesis to respond to the red light-induced resistance to P. xanthii, Furthermore, CmPIF8 also directly targeted the promoter of CmACS10, negatively participated in this process. In summary, this study revealed the specific mechanism by which the CmPIF8-CmERF27-CmACS10 module regulates red light-induced ethylene biosynthesis to resist P. xanthii infection, elucidate the interaction between light and plant hormones under biological stress, provide a reference and genetic resources for breeding of disease-resistant melon plants.

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来源期刊
Plant, Cell & Environment
Plant, Cell & Environment 生物-植物科学
CiteScore
13.30
自引率
4.10%
发文量
253
审稿时长
1.8 months
期刊介绍: Plant, Cell & Environment is a premier plant science journal, offering valuable insights into plant responses to their environment. Committed to publishing high-quality theoretical and experimental research, the journal covers a broad spectrum of factors, spanning from molecular to community levels. Researchers exploring various aspects of plant biology, physiology, and ecology contribute to the journal's comprehensive understanding of plant-environment interactions.
期刊最新文献
OsJRL negatively regulates rice cold tolerance via interfering phenylalanine metabolism and flavonoid biosynthesis. Rhizobacterial Bacillus enrichment in soil enhances smoke tree resistance to Verticillium wilt. NbPTR1 confers resistance against Pseudomonas syringae pv. actinidiae in kiwifruit. Biosynthesis and differential spatial distribution of the 3-deoxyanthocyanidins apigenidin and luteolinidin at the interface of a plant-cyanobacteria symbiosis exposed to cold. CmPIF8-CmERF27-CmACS10-mediated ethylene biosynthesis modulates red light-induced powdery mildew resistance in oriental melon.
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