Stimulation of secondary metabolism in grape berry exocarps by a nature-based strategy of foliar application of polyols

IF 2.2 3区 农林科学 Q3 FOOD SCIENCE & TECHNOLOGY OENO One Pub Date : 2024-03-25 DOI:10.20870/oeno-one.2024.58.1.7537
Artur Conde, Hélder Badim, L. Dinis, J. Moutinho-Pereira, Manon Ferrier, Marianne Unlubayir, Arnaud Lanoue, H. Gerós
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Abstract

In grapes under drought stress, polyols accumulate through tight coordination at the molecular level between increased membrane transport of polyols and inhibition of polyol oxidation. Here, the effects on grape metabolism of an exogenous foliar application of polyols as a potential sustainable viticultural practice to increase grapevine performance and berry quality were thoroughly assessed. Grapevines were pulverised with a polyol solution containing 2 mM mannitol and 2 mM sorbitol, and the metabolome of grape berry exocarps and important metabolic pathways associated with berry quality and polyol metabolism were analysed at véraison and mature stages. By combining metabolomics analysis using UPLC-MS, enzyme activity assays and targeted transcriptional analyses, it was demonstrated that foliar application of polyols stimulated by 3.5-fold and 6-fold abscisic acid (ABA) biosynthesis at véraison and mature grape berries, respectively. It also stimulated the concentration of anthocyanins, stilbenes and total phenolics in exocarps through the upregulation of phenylpropanoid, stilbenoid and anthocyanin biosynthetic pathways shown by increases in phenylalanine-ammonia lyase (PAL) activity (3-fold) and VviPAL1 expression, stilbene synthase 1 (VviSTS1) transcripts (ca. 5-fold), UDP-glucose:flavonoid 3-O-glucosyltransferase (UFGT) activity and VviUFGT1 expression, among other results, at the mature stage, when these changes were most noticeable. Many secondary metabolites synthesised in these pathways identified by UPLC-MS analysis were present at higher quantities in exocarps from polyol-treated plants such as fertaric acid, E-resveratrol, E-piceatannol, piceid, pallidol, E-ε-viniferin, myricetin-hexoside 1, cyanidin-3-O-glucoside and malvidin-3-O-(6-p-coumaroyl)-glucoside. Foliar application of low-concentration polyols is, therefore, a promising biostimulant-based strategy to improve grape berry quality and nutritional value in the current context of climate change.
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通过叶面喷施多元醇的自然策略刺激葡萄浆果外果皮的次生代谢
在干旱胁迫下的葡萄中,多元醇会通过增加多元醇的膜运输和抑制多元醇氧化之间在分子水平上的紧密协调而积累。在此,我们全面评估了外源叶面喷施多元醇对葡萄新陈代谢的影响,这是一种潜在的可持续葡萄栽培方法,可提高葡萄树的性能和浆果质量。用含有 2 毫摩尔甘露醇和 2 毫摩尔山梨醇的多元醇溶液粉碎葡萄藤,并在葡萄成熟期和成熟阶段分析葡萄浆果外果皮的代谢组以及与浆果质量和多元醇代谢相关的重要代谢途径。通过结合使用 UPLC-MS 进行代谢组学分析、酶活性测定和靶向转录分析,结果表明叶面喷施多元醇可分别刺激葡萄果实成熟期和成熟期脱落酸(ABA)生物合成的 3.5 倍和 6 倍。它还通过上调苯丙氨酸、芪类和花青素生物合成途径,刺激了外果皮中花青素、芪类和总酚的浓度,具体表现为苯丙氨酸氨裂解酶(PAL)活性(3 倍)和 VviPAL1 表达量、芪类合成酶 1(VviSTS1)转录本(约 5 倍)、UDP-gP1 表达量和 VviPAL1 表达量的增加。在成熟阶段,这些变化最为明显,其中包括 UDP-葡萄糖:类黄酮 3-O-葡萄糖基转移酶(UFGT)活性和 VviUFGT1 表达。通过 UPLC-MS 分析确定的在这些途径中合成的许多次生代谢物在多元醇处理过的植物外果皮中含量较高,如肥料酸、E-藜芦醇、E-苦橙皮酚、苦橙皮苷、苍白酚、E-ε-维尼芬素、杨梅素-己糖苷 1、青花素-3-O-葡萄糖苷和麦饭石素-3-O-(6-对香豆酰)-葡萄糖苷。因此,在当前气候变化的背景下,叶面喷施低浓度多元醇是一种很有前景的生物刺激策略,可提高葡萄浆果的质量和营养价值。
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来源期刊
OENO One
OENO One Agricultural and Biological Sciences-Food Science
CiteScore
4.40
自引率
13.80%
发文量
85
审稿时长
13 weeks
期刊介绍: OENO One is a peer-reviewed journal that publishes original research, reviews, mini-reviews, short communications, perspectives and spotlights in the areas of viticulture, grapevine physiology, genomics and genetics, oenology, winemaking technology and processes, wine chemistry and quality, analytical chemistry, microbiology, sensory and consumer sciences, safety and health. OENO One belongs to the International Viticulture and Enology Society - IVES, an academic association dedicated to viticulture and enology.
期刊最新文献
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