IF 8.7 1区 农林科学 Q1 Agricultural and Biological Sciences Horticulture Research Pub Date : 2024-12-28 DOI:10.1093/hr/uhae363
Qian Tong, Yongjian Wang, Regina Feil, John E Lunn, Xiaobo Xu, Yi Wang, Ghislaine Hilbert-Masson, Junhua Kong, Jinliang Chen, Serge Delrot, Bertrand Beauvoit, Zhenchang Liang, Eric Gomès, Yves Gibon, Zhanwu Dai
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摘要

高温会增加葡萄(Vitis vinifera L.)浆果的糖分浓度,从而对葡萄酒的成分和质量产生负面影响,而全球气候变化预计会加剧这一问题。通过选择性修剪来改变葡萄树的源汇比,是缓解这一问题的潜在策略。为了研究低源汇比(每簇保留三片叶子)对葡萄(赤霞珠品种)浆果碳代谢的影响,我们分析了浆果九个发育阶段的 42 种代谢物、21 种酶活性,以及在每簇两片叶子条件下生长的浆果的转录组。结果表明,在低源汇比条件下,代谢途径受到协调调控,以维持平衡。由于代谢物与酶活性之间存在延迟,代谢物与酶活性之间的相关性较弱,在低源-汇条件下,代谢物与酶活性之间的连接密度较低。除此之外,碳水化合物和氨基酸代谢途径的转录本因碳限制而富集。总之,这项综合分析揭示了对各种代谢途径的协调调控,从而维持了碳代谢的平衡,确保了葡萄果实在挑战性环境中的生存,凸显了葡萄果实代谢的高度可塑性。
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Integrated analysis of metabolites and enzyme activities reveals the plasticity of central carbon metabolism in grape (Vitis vinifera cv. Cabernet Sauvignon) berries under carbon limitation
High temperatures increase the sugar concentration of grape (Vitis vinifera L.) berries, which can negatively affect the composition and quality of wine, and global climate change is expected to exacerbate this problem. Modifying the source-to-sink ratio of grapevines by selective pruning is a potential strategy to mitigate this. To investigate the effects of low source-to-sink ratio (retaining three leaves per cluster) on carbon metabolism of grape (cv. Cabernet Sauvignon) berries, we conducted an analysis of 42 metabolites, 21 enzyme activities, at nine berry developmental stages,as well as transcriptomes from berries grown under two leaves per cluster. The results revealed that the metabolic pathways were coordinately regulated to maintain homeostasis under low source-to-sink ratio conditions. Because of a delay between metabolites and enzyme activities, the metabolites were loosely correlated with enzyme activities, and a lower density of connectivity between them appeared in low source-to-sink conditions. Otherwise, transcripts of the carbohydrate and amino acid metabolism pathways were enriched by carbon limitation. In summary, this integrated analysis reveals a coordinated regulation of various metabolic pathways that maintains the balance of carbon metabolism and ensures survival in challenging environments, highlighting the high metabolic plasticity of grape berries.
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来源期刊
Horticulture Research
Horticulture Research Biochemistry, Genetics and Molecular Biology-Biochemistry
CiteScore
11.20
自引率
6.90%
发文量
367
审稿时长
20 weeks
期刊介绍: Horticulture Research, an open access journal affiliated with Nanjing Agricultural University, has achieved the prestigious ranking of number one in the Horticulture category of the Journal Citation Reports ™ from Clarivate, 2022. As a leading publication in the field, the journal is dedicated to disseminating original research articles, comprehensive reviews, insightful perspectives, thought-provoking comments, and valuable correspondence articles and letters to the editor. Its scope encompasses all vital aspects of horticultural plants and disciplines, such as biotechnology, breeding, cellular and molecular biology, evolution, genetics, inter-species interactions, physiology, and the origination and domestication of crops.
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