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在露地条件下处理并暴露于热浪温度的加工番茄代谢变化的非靶向核磁共振研究。

Untargeted NMR Study of Metabolic Changes in Processing Tomato Treated with Under Open-Field Conditions and Exposed to Heatwave Temperatures.

作者信息

Pin Lorenzo, Sobolev Anatoly Petrovich, Testone Giulio, Scioli Giuseppe, Pinzari Flavia, Magnanimi Francesco, Colla Giuseppe, Cardarelli Mariateresa, Giannino Donato

机构信息

Institute for Biological Systems, Italian National Research Council, Monterotondo, 00015 Rome, Italy.

Department of Biology and Biotechnology, Sapienza University of Rome, 00185 Rome, Italy.

出版信息

Molecules. 2024 Dec 29;30(1):97. doi: 10.3390/molecules30010097.

Abstract

Rising temperatures due to climate change may affect the quality of open-field cultivated processing tomatoes by altering the nutrient content. Bioinoculants are growing in popularity as a nature-based strategy to mitigate these environmental stresses. Untargeted quantitative NMR spectroscopy was leveraged to characterize the metabolome of tomato fruits exposed to abiotic stress during the year 2022, which was marked by unexpected high temperatures and low rainfall compared to the year 2021 with average conditions. This study was conducted at growing sites in Tarquinia and Viterbo, comparing untreated plants to ones treated with a -based bioinoculant. The hotter year affected the water-soluble fraction (28 compounds), causing an increase in amino acids, citrate, and formate contents while decreasing carbohydrates together with a significant drop in β-sitosterol + campesterol in the organic fraction (11 compounds). The site mainly affected the linolenic acid levels, which were more abundant in Tarquinia than Viterbo in the hotter year, whereas ascorbate and myo-inositol were higher in Tarquinia in both years. The year × site interaction significantly affected the content of several amino acids, glucose, sucrose, and trigonelline. The bioinoculant effect was significant only for sucrose, while its interactions with the other factors showed little to no significance across all the measured metabolites.

摘要

气候变化导致的气温上升可能会通过改变营养成分来影响露地种植加工番茄的品质。生物菌剂作为一种基于自然的缓解这些环境压力的策略,越来越受到欢迎。利用非靶向定量核磁共振波谱法对2022年暴露于非生物胁迫下的番茄果实代谢组进行了表征,与条件平均的2021年相比,2022年的特点是意外的高温和低降雨。本研究在塔尔奎尼亚和维泰博的种植地点进行,将未处理的植株与使用基于[具体物质未给出]的生物菌剂处理的植株进行比较。较热的年份影响了水溶性部分(28种化合物),导致氨基酸、柠檬酸盐和甲酸盐含量增加,同时碳水化合物含量下降,有机部分(11种化合物)中的β-谷甾醇+菜油甾醇显著下降。种植地点主要影响亚麻酸水平,在较热的年份,塔尔奎尼亚的亚麻酸含量比维泰博更丰富,而在这两年中,塔尔奎尼亚的抗坏血酸和肌醇含量更高。年份×种植地点的交互作用显著影响了几种氨基酸、葡萄糖、蔗糖和胡芦巴碱的含量。生物菌剂的作用仅对蔗糖有显著影响,而其与其他因素的相互作用在所有测量的代谢物中显示出很小或没有显著性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/917c/11721353/744067167cbf/molecules-30-00097-g002.jpg

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