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水位亏缺对番茄多酚组成、营养品质和抗氧化能力影响的综合评价

A Comprehensive Evaluation of Effects on Water-Level Deficits on Tomato Polyphenol Composition, Nutritional Quality and Antioxidant Capacity.

作者信息

Jin Ning, Jin Li, Wang Shuya, Meng Xin, Ma Xianglan, He Xianxia, Zhang Guobing, Luo Shilei, Lyu Jian, Yu Jihua

机构信息

College of Horticulture, Gansu Agricultural University, Lanzhou 730070, China.

State Key Laboratory of Arid Land Crop Science, Gansu Agricultural University, Lanzhou 730070, China.

出版信息

Antioxidants (Basel). 2022 Aug 16;11(8):1585. doi: 10.3390/antiox11081585.

Abstract

Tomatoes have high nutritional value and abundant bioactive compounds. Moderate water deficit irrigation alters metabolic levels of fruits, improving composition and quality. We investigated the effects of water deficit (T1, T2, T3, and T4) treatments and adequate irrigation (CK) on tomato polyphenol composition, antioxidant capacity, and nutritional quality. Compared with CK, the total flavonoid content increased by 33.66% and 44.73% in T1 and T2, and total phenols increased by 57.64%, 72.22%, and 55.78% in T1, T2, and T3, respectively. The T2 treatment significantly enhanced antioxidant’ capacities (ABTS, HSRA, FRAP, and DPPH). There were multiple groups of significant or extremely significant positive correlations between polyphenol components and antioxidant activity. For polyphenols and antioxidant capacity, the classification models divided the treatments: CK and T4 and T1−T3. The contents of soluble solids, soluble protein, vitamin C, and soluble sugar of the treatment groups were higher than those of CK. The soluble sugar positively correlated with sugar−acid ratios. In the PCA-based model, T3 in the first quadrant indicated the best treatment in terms of nutritional quality. Overall, comprehensive rankings using principal component analysis (PCA) revealed T2 > T1 > T3 > T4 > CK. Therefore, the T2 treatment is a suitable for improving quality and antioxidant capacity. This study provides novel insights into improving water-use efficiency and quality in the context of water scarcity worldwide.

摘要

番茄具有很高的营养价值和丰富的生物活性化合物。适度的水分亏缺灌溉会改变果实的代谢水平,改善其成分和品质。我们研究了水分亏缺(T1、T2、T3和T4)处理和充分灌溉(CK)对番茄多酚组成、抗氧化能力和营养品质的影响。与CK相比,T1和T2中的总黄酮含量分别增加了33.66%和44.73%,T1、T2和T3中的总酚含量分别增加了57.64%、72.22%和55.78%。T2处理显著增强了抗氧化能力(ABTS、HSRA、FRAP和DPPH)。多酚成分与抗氧化活性之间存在多组显著或极显著的正相关。对于多酚和抗氧化能力,分类模型将处理分为:CK和T4以及T1−T3。处理组的可溶性固形物、可溶性蛋白、维生素C和可溶性糖含量均高于CK。可溶性糖与糖酸比呈正相关。在基于主成分分析(PCA)的模型中,第一象限中的T3表明在营养品质方面是最佳处理。总体而言,使用主成分分析(PCA)的综合排名显示T2>T1>T3>T4>CK。因此,T2处理适合提高品质和抗氧化能力。本研究为在全球水资源短缺的背景下提高水分利用效率和品质提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4126/9405155/6a6dcde93f17/antioxidants-11-01585-g001.jpg

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