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地中海田间条件下灌溉与非灌溉葡萄藤(品种“梅洛”)果实中激素的组织特异性变化

Tissue-Specific Hormonal Variations in Grapes of Irrigated and Non-irrigated Grapevines ( cv. "Merlot") Growing Under Mediterranean Field Conditions.

作者信息

Ribalta-Pizarro Camila, Muñoz Paula, Munné-Bosch Sergi

机构信息

Department of Evolutionary Biology, Ecology and Environmental Sciences, University of Barcelona, Barcelona, Spain.

Research Institute of Nutrition and Food Safety, University of Barcelona, Barcelona, Spain.

出版信息

Front Plant Sci. 2021 Feb 1;12:621587. doi: 10.3389/fpls.2021.621587. eCollection 2021.

Abstract

Agricultural practices in grapevines management include water restrictions due to its positive effect on wine quality, especially when applied at fruit ripening. Although the effects of water stress in some groups of phytohormones have already been described in leaves and whole grapes, information regarding tissue-specific variations in hormones during ripening in grapes is scarce. Field-grown grapevines from the cv. "Merlot" were subjected to two differential water supplies, including only rainfed, non-irrigated vines (T0) and vines additionally irrigated with 25Lweek vine (T1). Tissue-specific variations in the hormonal profiling of grapes [including changes in the contents of abscisic acid (ABA), jasmonic acid (JA), salicylic acid (SA), the ethylene precursor 1-amino-cyclopropane-1-carboxylic acid (ACC), the auxin indole-3-acetic acid, gibberellins 1, 3, 4, and 7 (GA, GA, GA, and GA), the cytokinins -zeatin, and 2-isopentenyl adenine, including as well their respective ribosylated forms] were periodically evaluated from to harvest. The hormonal profiling in leaves was also measured at the beginning and end of the season for comparison. Results showed that grape growth dynamics were transiently affected by the differences in water regimes, the increased water supply leading to an accelerated growth, slightly reduced accumulation of sugars, and transiently lowered pH, although grape quality did not differ between treatments at harvest. Hormonal profiling of whole berries did not reveal any difference in the endogenous contents of phytohormones between treatments, except for a transient decrease in GA contents in T1 compared to T0 vines, which was not confirmed at the tissular level. Hormonal profiling at the tissue level highlighted a differential accumulation of phytohormones during ripening in berry tissues, with pulps being particularly poor in ABA, JA, and SA contents, seeds particularly accumulating ACC, gibberellins, and zeatin-type cytokinins, and the skin being particularly rich in auxin and active cytokinins. Changes in water supply led to very small and transient changes in the endogenous contents of phytohormones in the seeds, pulp, and skin of berries, the most remarkable variations being observed in cytokinin contents, which increased earlier [between 5 and 12days after (DAV)] but later kept more constant in the skin from T1 compared to T0 vines and were also 3-fold higher at 40 DAV in seeds of T1 compared to T0 vines. It is concluded that small changes in water supply can trigger hormonal-driven physiological adjustments at the tissular level affecting the evolution of fruit growth and quality throughout grape berry ripening.

摘要

葡萄栽培管理中的农业实践包括水分限制,因为这对葡萄酒品质有积极影响,尤其是在果实成熟时进行水分限制。尽管已经描述了水分胁迫对某些植物激素组在叶片和整串葡萄中的影响,但关于葡萄成熟过程中激素的组织特异性变化的信息却很少。对“梅洛”品种的田间种植葡萄藤进行了两种不同的供水处理,包括仅靠雨水灌溉的非灌溉藤(T0)和额外每周每株灌溉25升水的藤(T1)。从[具体时间]到收获期间,定期评估葡萄激素谱的组织特异性变化[包括脱落酸(ABA)、茉莉酸(JA)、水杨酸(SA)、乙烯前体1-氨基环丙烷-1-羧酸(ACC)、生长素吲哚-3-乙酸、赤霉素1、3、4和7(GA₁、GA₃、GA₄和GA₇)、细胞分裂素-玉米素和2-异戊烯基腺嘌呤,以及它们各自的核糖基化形式的含量变化]。还在季节开始和结束时测量了叶片中的激素谱以作比较。结果表明,水分供应差异对葡萄生长动态有短暂影响,水分供应增加导致生长加速、糖分积累略有减少以及pH值短暂降低,尽管收获时不同处理间的葡萄品质没有差异。除了与T0藤相比,T1藤中GA含量有短暂下降(但在组织水平未得到证实)外,整颗浆果的激素谱未显示不同处理间植物激素内源含量有任何差异。组织水平的激素谱突出了浆果组织成熟过程中植物激素的差异积累,果肉中ABA、JA和SA含量特别低,种子中特别积累ACC、赤霉素和玉米素型细胞分裂素,而果皮中生长素和活性细胞分裂素特别丰富。水分供应变化导致浆果种子、果肉和果皮中植物激素内源含量发生非常小且短暂的变化,最显著的变化出现在细胞分裂素含量上,其在[具体时间点]后5至12天增加得更早,但与T0藤相比,T1藤果皮中的细胞分裂素含量在后期保持更稳定,并且在40天后果实发育期时,T1藤种子中的细胞分裂素含量比T0藤高3倍。得出的结论是,水分供应的微小变化可在组织水平引发激素驱动的生理调节,影响整个葡萄浆果成熟过程中果实生长和品质的演变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e9bb/7882616/c6c18940f69e/fpls-12-621587-g001.jpg

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