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一株具有蛋白酶和植酸酶活性菌株的筛选鉴定及其在豆粕发酵中的应用

Screening and Identification of a Strain with Protease and Phytase Activities and Its Application in Soybean Meal Fermentation.

作者信息

Lin Hengyi, Han Tao, Wang Jiteng, Ma Zheng, Yu Xiaoping

机构信息

Zhejiang Provincial Key Laboratory of Biometrology and Inspection & Quarantine, College of Life Sciences, China Jiliang University, Xueyuan Street, Xiasha Higher Education District, Hangzhou, Zhejiang Province, 310018, People's Republic of China.

Department of Aquaculture, Zhejiang Ocean University, Zhoushan, 316000, Zhejiang Province, China.

出版信息

Appl Biochem Biotechnol. 2024 Feb;196(2):790-803. doi: 10.1007/s12010-023-04568-w. Epub 2023 May 19.

Abstract

The aims of the study were to degrade the anti-nutritional factors (ANFs) such as phytic acid, glycinin, and β-conglycinin and improve the values of soybean meal (SBM). Firstly, in this study, a strain PY-4B which exhibited the best enzymatic activities of protease (403.3 ± 17.8 U/mL) and phytase (62.9 ± 2.9 U/mL) was isolated and screened among the isolates. Based on the analysis of physiological and biochemical characteristics and 16S rDNA sequence, the strain PY-4B was identified and named as Pseudomonas PY-4B. Next, Pseudomonas PY-4B was applied to fermentation of SBM. The results showed that the contents of glycinin and β-conglycinin were decreased by 57-63%, and the phytic acid was remarkably degraded by 62.5% due to the fermentation of SBM by Pseudomonas PY-4B. The degradation of glycinin and β-conglycinin resulted in increase of contents of water-soluble proteins and amino acids in fermented SBM. Moreover, Pseudomonas PY-4B exhibited no hemolytic activity and slight inhibitory effect on the growth of pathogen Staphylococcus aureus and the wide range of pH tolerance (3 to 9). In summary, our study indicates that isolated strain Pseudomonas PY-4B is a safe and applicable strain and has the ability to effectively degrade the ANFs (phytic acid, glycinin, and β-conglycinin) in SBM by fermentation.

摘要

本研究的目的是降解抗营养因子(ANFs),如植酸、大豆球蛋白和β-伴大豆球蛋白,并提高豆粕(SBM)的价值。首先,在本研究中,从分离菌株中筛选出一株蛋白酶(403.3±17.8 U/mL)和植酸酶(62.9±2.9 U/mL)酶活性最佳的菌株PY-4B。通过生理生化特性分析和16S rDNA序列分析,鉴定该菌株PY-4B并命名为假单胞菌PY-4B。接下来,将假单胞菌PY-4B应用于豆粕发酵。结果表明,由于假单胞菌PY-4B对豆粕的发酵作用,大豆球蛋白和β-伴大豆球蛋白的含量降低了57 - 63%,植酸显著降解了62.5%。大豆球蛋白和β-伴大豆球蛋白的降解导致发酵豆粕中水溶性蛋白质和氨基酸含量增加。此外,假单胞菌PY-4B没有溶血活性,对病原菌金黄色葡萄球菌的生长有轻微抑制作用,并且具有较宽的pH耐受范围(3至9)。总之,我们的研究表明,分离得到的假单胞菌PY-4B是一种安全且适用的菌株,具有通过发酵有效降解豆粕中抗营养因子(植酸、大豆球蛋白和β-伴大豆球蛋白)的能力。

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