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鉴定柑橘对亚洲韧皮杆菌感染的最早反应:一项时间代谢组学研究。

Identifying the earliest citrus responses to Liberibacter asiaticus infection: a temporal metabolomics study.

作者信息

Li Jingwen, Wang Yuanzhi Zimmy, Gmitter Fred G, Wang Yu

机构信息

Citrus Research and Education Center, Institute of Food and Agricultural Sciences, University of Florida, Lake Alfred, FL, United States.

出版信息

Front Plant Sci. 2024 Nov 6;15:1455344. doi: 10.3389/fpls.2024.1455344. eCollection 2024.

Abstract

The global citrus industry faces a great threat from Huanglongbing (HLB), a destructive disease caused by ' Liberibacter asiaticus' (Las) that induces significant economic losses without any known cure. Understanding how citrus plants defend against HLB, particularly at the early stages of infection, is crucial for developing long-term solutions. This study investigated the earliest metabolic responses of fresh citrus leaves to Las infection using untargeted metabolomics and machine learning models. HLB-tolerant and HLB-sensitive cultivars were compared to analyze their biochemical reactions within 48 hours post-infection. HESI/Q-Orbitrap MS analysis identified temporal differential metabolites, revealing distinct metabolic pathways activated in response to Las infection. Both cultivars responded by increasing specific metabolite concentrations, such as flavonoids, within 2 hours post-infection, but the HLB-tolerant cultivar maintained higher levels throughout the 48-hour period. This early metabolic activity could influence long-term plant health by enhancing disease resistance and reducing pathogen impact. These findings provide potential biomarkers for breeding HLB-resistant cultivars and offer valuable insights for developing sustainable management strategies to mitigate the impact of HLB on the citrus industry, ensuring its long-term productivity and economic viability.

摘要

全球柑橘产业面临着黄龙病(HLB)带来的巨大威胁,黄龙病是一种由亚洲韧皮杆菌(Las)引起的毁灭性病害,会造成重大经济损失且尚无已知的治愈方法。了解柑橘植株如何抵御黄龙病,尤其是在感染的早期阶段,对于制定长期解决方案至关重要。本研究使用非靶向代谢组学和机器学习模型,调查了新鲜柑橘叶片对Las感染的最早代谢反应。对耐HLB和感HLB的品种进行了比较,以分析它们在感染后48小时内的生化反应。高分辨质谱(HESI/Q-Orbitrap MS)分析确定了随时间变化的差异代谢物,揭示了针对Las感染激活的不同代谢途径。两个品种在感染后2小时内都通过增加特定代谢物浓度(如类黄酮)做出反应,但耐HLB品种在整个48小时内都保持较高水平。这种早期代谢活动可能通过增强抗病性和降低病原体影响来影响植株的长期健康。这些发现为培育抗HLB品种提供了潜在的生物标志物,并为制定可持续管理策略以减轻HLB对柑橘产业的影响提供了有价值的见解,确保其长期生产力和经济可行性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cd3d/11579704/89a6d369f623/fpls-15-1455344-g001.jpg

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