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基于质谱的代谢组学解析入侵毒芹种群生物碱生物合成与功能

Mass spectrometry-based metabolomics for the elucidation of alkaloid biosynthesis and function in invasive Vincetoxicum rossicum populations.

机构信息

Vineland Research and Innovation Centre, 4890 Victoria Ave North, Box 4000, Vineland Station, Ontario, L0R 2E0, Canada; Centre for Biotechnology, Brock University, 1812 Sir Isaac Brock Way, St Catharines, Ontario, L2S 3A1, Canada.

Department of Chemistry and Chemical Biology, McMaster University, 1280 Main St W, Hamilton, Ontario, L8S 4L8, Canada.

出版信息

Phytochemistry. 2024 May;221:114051. doi: 10.1016/j.phytochem.2024.114051. Epub 2024 Mar 5.

Abstract

The genus Vincetoxicum includes a couple of highly invasive vines in North America that threaten biodiversity and challenge land management strategies. Vincetoxicum species are known to produce bioactive phenanthroindolizidine alkaloids that might play a role in the invasiveness of these plants via chemical interactions with other organisms. Untargeted, high-resolution mass spectrometry-based metabolomics approaches were used to explore specialized metabolism in Vincetoxicum plants collected from invaded sites in Ontario, Canada. All metabolites corresponding to alkaloids in lab and field samples of V. rossicum and V. nigrum were identified, which collectively contained 25 different alkaloidal features. The biosynthesis of these alkaloids was investigated by the incorporation of the stable isotope-labelled phenylalanine precursor providing a basis for an updated biosynthetic pathway accounting for the rapid generation of chemical diversity in invasive Vincetoxicum. Aqueous extracts of aerial Vincetoxicum rossicum foliage had phytotoxic activity against seedlings of several species, resulting in identification of tylophorine as a phytotoxin; tylophorine and 14 other alkaloids from Vincetoxicum accumulated in soils associated with full-sun and a high-density of V. rossicum. Using desorption-electrospray ionization mass spectrometry, 15 alkaloids were found to accumulate at wounded sites of V. rossicum leaves, a chemical cocktail that would be encountered by feeding herbivores. Understanding the specialized metabolism of V. rossicum provides insight into the roles and influences of phenanthroindolizidine alkaloids in ecological systems and enables potential, natural product-based approaches for the control of invasive Vincetoxicum and other weedy species.

摘要

该属包括几种在北美的高度入侵性藤本植物,它们威胁着生物多样性,挑战着土地管理策略。已知 Vincetoxicum 物种产生生物活性的菲并吲哚里西啶生物碱,这些生物碱可能通过与其他生物的化学相互作用在这些植物的入侵中发挥作用。使用基于非靶向、高分辨率质谱的代谢组学方法来探索从加拿大安大略省入侵地点采集的 Vincetoxicum 植物的特殊代谢。鉴定了从 V. rossicum 和 V. nigrum 的实验室和野外样本中生物碱对应的所有代谢物,它们共同含有 25 种不同的生物碱特征。通过掺入稳定同位素标记的苯丙氨酸前体来研究这些生物碱的生物合成,为一个更新的生物合成途径提供了基础,该途径解释了在入侵性 Vincetoxicum 中快速产生的化学多样性。空气 V. rossicum 枝叶的水提物对几种物种的幼苗具有植物毒性活性,导致鉴定出千金藤碱为植物毒素;千金藤碱和 Vincetoxicum 中的 14 种其他生物碱在与 V. rossicum 高密度和全日照相关的土壤中积累。使用解吸电喷雾电离质谱,在 V. rossicum 叶片的受伤部位发现 15 种生物碱积累,这是一种取食性食草动物会遇到的化学混合物。了解 V. rossicum 的特殊代谢为了解菲并吲哚里西啶生物碱在生态系统中的作用和影响提供了深入的了解,并为控制入侵性 Vincetoxicum 和其他杂草物种提供了潜在的、基于天然产物的方法。

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