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基于第一份基于 H-NMR 的代谢组学研究评估 agro-active 内治疗法处理感染韧皮部难养菌亚种的油橄榄树。

Agro-active endo-therapy treated Xylella fastidiosa subsp. pauca-infected olive trees assessed by the first H-NMR-based metabolomic study.

机构信息

Department of Biological and Environmental Sciences and Technologies, University of Salento, 73100, Lecce, Italy.

Invaio Sciences, Cambridge, MA, 02138, USA.

出版信息

Sci Rep. 2022 Apr 8;12(1):5973. doi: 10.1038/s41598-022-09687-8.

Abstract

Xylella fastidiosa is a xylem-limited bacterium causing a range of economically important plant diseases in hundreds of crops. Over the last decade, a severe threat due to Olive Quick Decline Syndrome (OQDS), caused by Xylella fastidiosa subspecies pauca, affected the Salento olive groves (Apulia, South-East Italy). Very few phyto-therapeutics, including a Zn/Cu citric acid biocomplex foliar treatment, were evaluated to mitigate this disease. However, the traditional foliar applications result in the agro-actives reaching only partially their target. Therefore the development of novel endo-therapeutic systems was suggested. Metabolite fingerprinting is a powerful method for monitoring both, disease progression and treatment effects on the plant metabolism, allowing biomarkers detection. We performed, for the first time, short-term monitoring of metabolic pathways reprogramming for infected Ogliarola salentina and Cima di Melfi olive trees after precision intravascular biocomplex delivery using a novel injection system. Upon endo therapy, we observed specific variations in the leaf content of some metabolites. In particular, the H NMR-based metabolomics approach showed, after the injection, a significant decrease of both the disease biomarker quinic acid and mannitol with simultaneous increase of polyphenols and oleuropein related compounds in the leaf's extracts. This combined metabolomics/endo-therapeutic methodology provided useful information in the comprehension of plant physiology for future applications in OQDS control.

摘要

韧皮部杆菌是一种木质部局限的细菌,可导致数百种作物的一系列重要经济作物病害。在过去的十年中,由于韧皮部杆菌亚种 pauca 引起的橄榄快速衰退综合征 (OQDS),对莱切的橄榄树林(意大利东南部普利亚地区)造成了严重威胁。只有少数植物疗法,包括 Zn/Cu 柠檬酸生物复合物叶面处理,被评估用于减轻这种疾病。然而,传统的叶面应用导致农用活性物质仅部分到达其目标。因此,建议开发新型内治疗系统。代谢指纹图谱是监测疾病进展和植物代谢治疗效果的有力方法,可用于检测生物标志物。我们首次使用新型注射系统对受感染的 Ogliarola salentina 和 Cima di Melfi 橄榄树进行了短期代谢途径重编程的监测。在内治疗后,我们观察到叶片中一些代谢物的含量有特定变化。特别是,基于 H NMR 的代谢组学方法表明,注射后,叶片提取物中疾病生物标志物奎宁酸和甘露醇的含量显著降低,同时多酚和橄榄苦苷相关化合物的含量增加。这种组合的代谢组学/内治疗方法为理解植物生理学提供了有用的信息,为未来在 OQDS 控制中的应用提供了依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4e0c/8993878/4328724a6ba3/41598_2022_9687_Fig1_HTML.jpg

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