首页> 外文期刊>Metabolites >Deciphering the Resistance Mechanism of Tomato Plants Against Whitefly-Mediated Tomato Curly Stunt Virus Infection through Ultra-High-Performance Liquid Chromatography Coupled to Mass Spectrometry (UHPLC-MS)-Based Metabolomics Approaches
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Deciphering the Resistance Mechanism of Tomato Plants Against Whitefly-Mediated Tomato Curly Stunt Virus Infection through Ultra-High-Performance Liquid Chromatography Coupled to Mass Spectrometry (UHPLC-MS)-Based Metabolomics Approaches

机译:通过基于质谱(UHPLC-MS)的超高效液相色谱-代谢组学方法,研究番茄植物对粉虱介导的番茄卷曲特技病毒感染的抗性机制

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Begomoviruses, such as the Tomato curly stunt virus (ToCSV), pose serious economic consequences due to severe crop losses. Therefore, the development and screening of possible resistance markers is imperative. While some tomato cultivars exhibit differential resistance to different begomovirus species, in most cases, the mechanism of resistance is not fully understood. In this study, the response of two near-isogenic lines of tomato ( Solanum lycopersicum ), differing in resistance against whitefly-mediated ToCSV infection were investigated using untargeted ultra-high-performance liquid chromatography coupled to mass spectrometry (UHPLC-MS)-based metabolomics. The responses of the two lines were deciphered using multivariate statistics models. Principal component analysis (PCA) scores plots from various time intervals revealed that the resistant line responded more rapidly with changes to the metabolome than the susceptible counterpart. Moreover, the metabolic reprogramming of chemically diverse metabolites that span a range of metabolic pathways was associated with the defence response. Biomarkers primarily included hydroxycinnamic acids conjugated to quinic acid, galactaric acid, and glucose. Minor constituents included benzenoids, flavonoids, and steroidal glycoalkaloids. Interestingly, when reduced to the level of metabolites, the phytochemistry of the infected plants’ responses was very similar. However, the resistant phenotype was strongly associated with the hydroxycinnamic acid derivatives deployed in response to infection. In addition, the resistant line was able to mount a stronger and quicker response.
机译:诸如番茄卷曲特技病毒(ToCSV)等大流行病毒会因严重的农作物损失而造成严重的经济后果。因此,必须开发和筛选可能的抗性标记。尽管某些番茄品种对不同的begomovirus品种表现出不同的抗性,但在大多数情况下,抗性的机理尚不完全清楚。在这项研究中,使用基于质谱的非靶向超高效液相色谱(UHPLC-MS),研究了两个近等基因的番茄(Solanum lycopersicum)对粉虱介导的ToCSV感染的抵抗力不同的响应代谢组学。使用多元统计模型对两条线的响应进行了解密。来自不同时间间隔的主成分分析(PCA)评分图显示,抗性品系对代谢组的反应比易感对应物反应更快。此外,跨越一系列代谢途径的化学多样性代谢物的代谢重编程与防御反应有关。生物标志物主要包括与奎尼酸,半乳糖酸和葡萄糖结合的羟基肉桂酸。次要成分包括苯甲酸酯类,类黄酮和甾体类生物碱。有趣的是,当降低到代谢产物的水平时,被感染植物反应的植物化学非常相似。但是,耐药表型与响应感染而部署的羟基肉桂酸衍生物密切相关。另外,抵抗线能够发出更强更快的响应。

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