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行间覆盖黑色地膜引起的葡萄园微气候改变通过转录组重塑了赤霞珠葡萄的风味组学。

Vineyard microclimate alterations induced by black inter-row mulch through transcriptome reshaped the flavoromics of cabernet sauvignon grapes.

机构信息

Center for Viticulture and Enology, College of Food Science and Nutritional Engineering, China Agricultural University, Beijing, 100083, China.

Key Laboratory of Viticulture and Enology, Ministry of Agriculture and Rural Affairs, Beijing, 100083, China.

出版信息

BMC Plant Biol. 2024 Apr 9;24(1):258. doi: 10.1186/s12870-024-04986-w.

Abstract

BACKGROUND

Weed control is essential for agricultural floor management in vineyards and the inter-row mulching is an eco-friendly practice to inhibit weed growth via filtering out photosynthetically active radiation. Besides weed suppression, inter-row mulching can influence grapevine growth and the accumulation of metabolites in grape berries. However, the complex interaction of multiple factors in the field challenges the understanding of molecular mechanisms on the regulated metabolites. In the current study, black geotextile inter-row mulch (M) was applied for two vintages (2016-2017) from anthesis to harvest. Metabolomics and transcriptomics analysis were conducted in two vintages, aiming to provide insights into metabolic and molecular responses of Cabernet Sauvignon grapes to M in a semi-arid climate.

RESULTS

Upregulation of genes related to photosynthesis and heat shock proteins confirmed that M weakened the total light exposure and grapes suffered heat stress, resulting in lower sugar-acid ratio at harvest. Key genes responsible for enhancements in phenylalanine, glutamine, ornithine, arginine, and C alcohol concentrations, and the downward trend in ε-viniferin, anthocyanins, flavonols, terpenes, and norisoprenoids in M grapes were identified. In addition, several modules significantly correlated with the metabolic biomarkers through weighted correlation network analysis, and the potential key transcription factors regulating the above metabolites including VviGATA11, VviHSFA6B, and VviWRKY03 were also identified.

CONCLUSION

This study provides a valuable overview of metabolic and transcriptomic responses of M grapes in semi-arid climates, which could facilitate understanding the complex regulatory network of metabolites in response to microclimate changes.

摘要

背景

杂草控制对于葡萄园的农业地面管理至关重要,行间覆盖是一种通过过滤光合有效辐射来抑制杂草生长的环保实践。除了抑制杂草,行间覆盖还可以影响葡萄藤的生长和葡萄浆果中代谢物的积累。然而,田间多种因素的复杂相互作用挑战了对受调控代谢物的分子机制的理解。在本研究中,从开花到收获,在两个葡萄年份(2016-2017 年)中应用了黑色土工布行间覆盖(M)。在两个葡萄年份进行了代谢组学和转录组学分析,旨在深入了解半干旱气候下 Cabernet Sauvignon 葡萄对 M 的代谢和分子响应。

结果

与光合作用和热休克蛋白相关的基因上调证实,M 减弱了总光照暴露,葡萄受到热应激,导致收获时糖酸比降低。关键基因负责增强苯丙氨酸、谷氨酰胺、鸟氨酸、精氨酸和 C 醇浓度,以及 M 葡萄中 ε-viniferin、花青素、类黄酮、萜类和异戊二烯的下降趋势。此外,通过加权相关网络分析,与代谢生物标志物显著相关的几个模块也被鉴定出来,潜在的关键转录因子包括 VviGATA11、VviHSFA6B 和 VviWRKY03,它们调节上述代谢物。

结论

本研究提供了对半干旱气候下 M 葡萄代谢和转录组响应的宝贵概述,这有助于理解代谢物对小气候变化的复杂调控网络。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e260/11003005/3388afb68f7c/12870_2024_4986_Fig1_HTML.jpg

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