食品科学 ›› 2026, Vol. 47 ›› Issue (14): 163-174.doi: 10.7506/spkx1002-6630-20260109-083

• 生物工程 • 上一篇    

不同种植模式对马瑟兰葡萄酒自然发酵过程中微生物群落及挥发性风味物质的影响

樊亚苗,陈翔,葛谦,李彩虹,翟明阳,田晓菊   

  1. (1.宁夏大学食品科学与工程学院,宁夏?银川 750021;2.宁夏农产品质量标准与检测技术研究所,宁夏?银川 750002)
  • 发布日期:2026-08-24
  • 基金资助:
    宁夏回族自治区重点研发项目(2024BBF02005); 宁夏农林科学院农业科技自主创新专项科技创新引导项目(NKYG-25-25)

Effects of Different Cultivation Practices on Microbial Communities and Volatile Aroma Compounds during Natural Fermentation of Marselan Wine

FAN Yamiao, CHEN Xiang, GE Qian, LI Caihong, ZHAI Mingyang, TIAN Xiaoju   

  1. (1. School of Food Science and Engineering, Ningxia university, Yinchuan 750021, China; 2. Ningxia Agricultural Products Quality Standard and Testing Technology Research Institute, Yinchuan 750002, China)
  • Published:2026-08-24

摘要: 为探究种植模式对马瑟兰葡萄酒自然发酵过程中微生物群落及挥发性风味物质的影响,本研究以常规(conventional,CV)、自然农法(natural farming,NF)和生物动力(biodynamic,BD)种植的马瑟兰葡萄为原料,运用高通量测序及顶空固相微萃取-气相色谱-质谱联用技术分析发酵过程中微生物群落和挥发性风味物质的组成及演替规律,并利用冗余分析和Spearman相关性分析本土核心微生物与挥发性风味物质之间的相关性。结果表明:BD模式酒样中微生物多样性整体高于NF和CV模式。发酵前期的优势真菌属为链格孢属(Alternaria)、枝孢属(Cladosporium)和葡萄孢属(Botrytis),随着发酵进行,酿酒酵母(Saccharomyces)和汉逊酵母属(Hanseniaspora)成为优势菌群。优势细菌属包括贪铜菌属(Cupriavidus)、塔特姆菌属(Tatumella)、乳杆菌属(Lactobacillus)、马赛菌属(Massilia)、鞘氨醇单胞菌属(Sphingomonas)、假单胞菌属(Pseudomonas)等。其中Cupriavidus和Pseudomonas是CV模式优势菌属,Tatumella和Lactobacillus在BD模式相对丰度最高。风味物质在发酵末期种类最多、含量最高,且不同模式间差异显著。冗余分析结果表明,BD模式的Tatumella、Saccharomyces和Hanseniaspora与1-戊醇、乙醛等物质呈正相关。NF模式下Lactobacillus与正己醛、芳樟醇呈正相关;而Hanseniaspora与乙醛呈正相关,与芳樟醇呈负相关。CV模式下癸醛、十二醛等与Cupriavidus呈正相关,与Botrytis、Cladosporium呈负相关。Spearman分析进一步证实Saccharomyces与绝大多数香气化合物呈强正相关,Botrytis、Cladosporium等与部分醇类呈负相关。本研究为阐释种植模式通过影响微生物群落进而调控葡萄酒香气品质提供了理论依据。

关键词: 高通量测序;种植模式;自然发酵;挥发性风味物质

Abstract: To investigate the effects of cultivation practices on microbial communities and volatile flavor compounds during spontaneous fermentation of Marselan wine, this study used Marselan grapes from conventional (CV), natural farming (NF), and biodynamic (BD) cultivation systems as raw materials for winemaking. High-throughput sequencing and headspace solid-phase microextraction-gas chromatography-mass spectrometry (HS-SPME-GC-MS) were employed to analyze the composition and successional patterns of microbial communities and volatile flavor compounds during fermentation. Redundancy analysis (RDA) and Spearman correlation analysis were used to explore the relationships between indigenous core microorganisms and volatile flavor compounds. The results indicated that BD wine samples exhibited higher overall microbial diversity than NF and CV samples. The dominant fungal genera in the early fermentation stage were Alternaria, Cladosporium, and Botrytis, while Saccharomyces and Hanseniaspora became dominant as fermentation progressed. The dominant bacterial genera included Cupriavidus, Tatumella, Lactobacillus, Massilia, Sphingomonas, and Pseudomonas. Cupriavidus and Pseudomonas were dominant in the CV mode, while Tatumella and Lactobacillus exhibited the highest relative abundance in the BD mode. The variety and concentration of flavor compounds were the highest at the end of fermentation, with significant differences among modes. RDA results indicated that for the BD mode, Tatumella, Saccharomyces, and Hanseniaspora were positively correlated with 1-pentanol and acetaldehyde. In the NF mode, Lactobacillus was positively correlated with hexanal, and linalool, while Hanseniaspora was positively correlated with acetaldehyde but negatively correlated with linalool. In the CV mode, decanal, dodecanal, and other aldehydes were positively correlated with Cupriavidus and negatively correlated with Botrytis and Cladosporium. Spearman analysis further confirmed that Saccharomyces showed strong positive correlations with most aroma compounds, while Botrytis and Cladosporium exhibited negative correlations with certain alcohols. This study provides theoretical support for elucidating how cultivation practices influence the aroma quality of wine by shaping the microbial community.

Key words: high-throughput sequencing; cultivation patterns; spontaneous fermentation; volatile flavor compounds

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