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中国精品科技期刊2020

乳酸菌与木糖葡萄球菌复配发酵剂调控发酵香肠品质、脂肪酸代谢与挥发性风味物质形成

Regulating the Quality, Fatty Acid Metabolism, and Volatile Flavor Substance Formation of Fermented Sausages with a Compound Fermentation Agent of Lactic Acid Bacteria and Xylose Staphylococcus

  • 摘要: 为优化发酵香肠品质与风味,本研究将鼠李糖乳杆菌6001、植物乳杆菌21790、戊糖片球菌22228与木糖葡萄球菌21445等比例复配为发酵剂应用于发酵香肠制备,以自然发酵为对照,探究其对香肠理化特性、游离脂肪酸代谢及挥发性风味物质形成的调控作用。结果表明,复配发酵剂可显著降低香肠pH与水分活度,提升储藏稳定性与食品安全性,同时改善产品色泽与质构,使亮度L*、红度/黄度比值a*/b*及总色差ΔE均显著优于对照组,硬度、弹性等质构参数也得到明显提升。脂肪代谢方面共检出14种游离脂肪酸,复配组棕榈酸、油酸等核心组分及总含量在各发酵阶段均显著高于对照组,有效促进脂肪水解。采用HS-SPME-GC-MS检出61种挥发性风味物质。首先通过OPLS-DA筛选出两组共有的关键风味标志物10种,包括正己醛、1-辛烯-3-醇、己酸甲酯、壬醛等;进而采用气味活性值(OAV)量化其对最终香气的贡献,复配组正己醛、1-辛烯-3-醇、芳樟醇等特征香气物质的OAV远高于对照组,其中正己醛OAV达690.22,对青草与油脂香气贡献突出。二者结合表明,复配发酵剂通过协同代谢显著提升了酯类、醛类、酮类等低阈值、高贡献香气物质的积累,赋予产品果香、脂香、青草香等丰富协调的风味层次。该复配发酵剂通过调控脂肪酸代谢与风味物质生成显著改善了发酵香肠综合品质,为其新产品开发及工业化生产提供了理论依据与技术支撑。

     

    Abstract: To optimize the quality and flavor of fermented sausages, this study used a fermentation starter prepared by blending Lactobacillus rhamnosus 6001, Lactobacillus plantarum 21790, Pediococcus pentosaceus 22228, and Staphylococcus xylosus 21445 in equal proportions to create a fermentation starter culture for fermented sausage production. Using natural fermentation as a control, the study investigated the regulatory effects of this starter culture on the physicochemical properties, free fatty acid metabolism, and the formation of volatile flavor compounds in the sausages. The results indicated that the blended starter culture significantly reduced the pH and water activity of the sausages, enhancing storage stability and food safety. It also improved product color and texture, with brightness (L*), the a*/b* ratio (redness/yellowness), and total color difference (ΔE) all significantly superior to those of the control group. Texture parameters such as hardness and elasticity were also markedly improved. Regarding fat metabolism, a total of 14 free fatty acids were detected. In the compound group, the levels of key components such as palmitic acid and oleic acid, as well as the total content, were significantly higher than those in the control group at all fermentation stages, effectively promoting fat hydrolysis. A total of 61 volatile flavor compounds were detected using HS-SPME-GC-MS. First, OPLS-DA was used to screen for 10 key flavor markers common to both groups, including n-hexanal, 1-octen-3-ol, methyl hexanoate, and nonanal; Subsequently, the Odor Activity Values (OAVs) were used to quantify their contribution to the final aroma. The OAVs of characteristic aroma compounds such as n-hexanal, 1-octen-3-ol, and linalool in the blended group were significantly higher than those in the control group. Among these, the OAV of n-hexanal reached 690.22, making a prominent contribution to the grassy and oily aromas. Taken together, these findings indicate that the blended starter culture significantly enhances the accumulation of low-threshold, high-contribution aroma compounds—such as esters, aldehydes, and ketones—through synergistic metabolism, endowing the product with rich and harmonious flavor layers including fruity, buttery, and grassy notes. By regulating fatty acid metabolism and the production of flavor compounds, this blended starter culture significantly improved the overall quality of fermented sausages, providing a theoretical basis and technical support for new product development and industrial production.

     

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