Plant Protection Research Institute, Guangdong Academy of Agricultural Sciences/Guangdong Provincial Key Laboratory of High Technology for Plant Protection, Guangzhou, 510640, China.
Key Laboratory of Green Prevention and Control on Fruits and Vegetables in South China, Ministry of Agriculture and Rural Affairs, Guangzhou, Guangdong, 510642, China.
Plant J. 2023 Dec;116(5):1309-1324. doi: 10.1111/tpj.16426. Epub 2023 Aug 23.
Citrus production is severely threatened by the devastating Huanglongbing (HLB) disease globally. By studying and analyzing the defensive behaviors of an HLB-tolerant citrus cultivar 'Shatangju', we discovered that citrus can sense Candidatus Liberibacter asiaticus (CLas) infection and induce immune responses against HLB, which can be further strengthened by both endogenously produced and exogenously applied methyl salicylate (MeSA). This immune circuit is turned on by an miR2977-SAMT (encoding a citrus Salicylate [SA] O-methyltransferase) cascade, by which CLas infection leads to more in planta MeSA production and aerial emission. We provided both transgenic and multi-year trail evidences that MeSA is an effective community immune signal. Ambient MeSA accumulation and foliage application can effectively induce defense gene expression and significantly boost citrus performance. We also found that miRNAs are battle fields between citrus and CLas, and about 30% of the differential gene expression upon CLas infection are regulated by miRNAs. Furthermore, CLas hijacks host key processes by manipulating key citrus miRNAs, and citrus employs miRNAs that coordinately regulate defense-related genes. Based on our results, we proposed that miRNAs and associated components are key targets for engineering or breeding resistant citrus varieties. We anticipate that MeSA-based management, either induced expression or external application, would be a promising tool for HLB control.
柑橘生产在全球范围内受到黄龙病(HLB)的严重威胁。通过研究和分析耐黄龙病柑橘品种‘沙糖桔’的防御行为,我们发现柑橘可以感知柑橘黄龙病菌(CLas)的感染,并诱导对 HLB 的免疫反应,这种免疫反应可以通过内源和外源产生的水杨酸甲酯(MeSA)进一步增强。这个免疫回路由 miR2977-SAMT(编码柑橘水杨酸 [SA] O-甲基转移酶)级联激活,CLas 感染导致更多的体内 MeSA 产生和空中排放。我们提供了转基因和多年试验的证据,证明 MeSA 是一种有效的群体免疫信号。环境中 MeSA 的积累和叶面喷施可以有效诱导防御基因的表达,并显著提高柑橘的性能。我们还发现,miRNA 是柑橘和 CLas 之间的战场,约 30%的 CLas 感染后的差异基因表达受 miRNA 调控。此外,CLas 通过操纵关键柑橘 miRNA 来劫持宿主关键过程,而柑橘则利用 miRNA 来协调调控防御相关基因。基于我们的结果,我们提出 miRNA 及其相关成分是工程或培育抗柑橘品种的关键目标。我们预计,基于 MeSA 的管理,无论是诱导表达还是外部应用,都将是控制 HLB 的有前途的工具。