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缺水状况对桃果实大小和多酚含量的影响比对其他果实品质性状的影响更为严重。

Water scarcity conditions affect peach fruit size and polyphenol contents more severely than other fruit quality traits.

作者信息

Rahmati Mitra, Vercambre Gilles, Davarynejad Gholamhossein, Bannayan Mohammad, Azizi Majid, Génard Michel

机构信息

INRA, UR 1115, Plantes et Systèmes de culture Horticoles, P.O. Box 84914, Avignon, France; Ferdowsi University of Mashhad, Faculty of Agriculture, P.O. Box 91775-1163, Mashhad, Iran.

出版信息

J Sci Food Agric. 2015 Mar 30;95(5):1055-65. doi: 10.1002/jsfa.6797. Epub 2014 Jul 18.

Abstract

BACKGROUND

The literature abounds with the impacts of drought conditions on the concentration of non-structural compounds (NSC) in peach fruits without distinction as to the direct effect of drought on fruit metabolism and its indirect effect through dilution. Moreover, there is a need to investigate the sensitivity of the fruit composition to progressive water deficit in semi-arid conditions, as well as the origin of variations in fruit composition - not only in carbohydrates and organic acids, but also in secondary metabolites such as polyphenols.

RESULTS

The increase in stress intensity resulted in smaller fruits and a reduction in yield. Drought increased fruit dry matter content, structural dry matter (SDM) content and firmness due to lower water import to fruits, although drought reduced fruit surface conductance and its transpiration. Drought significantly affected the concentrations of each NSC either through the decrease in dilution and/or modifications of their metabolism. The increase in hexoses and sorbitol concentrations of fruits grown under drought conditions resulted in an increase in the sweetness index but not near harvest. Malic acid concentration and content:SDM ratio increased as drought intensified, whereas those of citric and quinic acids decreased. Polyphenol concentration and content increased under severe drought.

CONCLUSION

The increase in stress intensity strongly affected fruit mass. The concentration of total carbohydrates and organic acid at harvest increased mainly through a decrease in fruit dilution, whereas the concentrations of polyphenols were also strongly affected through an impact on their metabolism.

摘要

背景

关于干旱条件对桃果实中非结构性化合物(NSC)浓度的影响,文献中已有大量记载,但未区分干旱对果实代谢的直接影响及其通过稀释作用产生的间接影响。此外,有必要研究在半干旱条件下果实成分对渐进性水分亏缺的敏感性,以及果实成分变化的来源——不仅包括碳水化合物和有机酸,还包括多酚等次生代谢物。

结果

胁迫强度增加导致果实变小、产量降低。由于果实水分输入减少,干旱增加了果实干物质含量、结构性干物质(SDM)含量和硬度,尽管干旱降低了果实表面导度及其蒸腾作用。干旱通过稀释作用的降低和/或其代谢的改变,显著影响了每种NSC的浓度。干旱条件下生长的果实中己糖和山梨醇浓度的增加导致甜度指数升高,但在收获期附近未出现这种情况。随着干旱加剧,苹果酸浓度和含量:SDM比值增加,而柠檬酸和奎尼酸的浓度和含量则下降。在严重干旱条件下,多酚浓度和含量增加。

结论

胁迫强度的增加对果实重量有强烈影响。收获时总碳水化合物和有机酸的浓度主要通过果实稀释作用的降低而增加,而多酚的浓度也因其代谢受到影响而大幅增加。

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