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菌株对有氧环境的适应性

Adaptation to Aerobic Environment of Strains.

作者信息

Maresca Diamante, Zotta Teresa, Mauriello Gianluigi

机构信息

Department of Agricultural Sciences, University of Naples Federico II, Portici, Italy.

Institute of Food Science, National Research Council, Avellino, Italy.

出版信息

Front Microbiol. 2018 Feb 9;9:157. doi: 10.3389/fmicb.2018.00157. eCollection 2018.

Abstract

Oxygen is considered one of the main factors affecting probiotic bacteria survival due to the induction of oxidative damages caused by the action of reactive oxygen species (ROS). It has been shown that oxidative stress resistance in lactic acid bacteria is strongly dependent on the type of cell metabolism. Shift from fermentative to respiratory metabolism (through the addition of heme and menaquinone and in presence of oxygen) was associated to increase in biomass, long-term survival, and production of antioxidant enzymes. The aim of this work was to investigate the effect of aerobic (presence of oxygen) and respiratory (presence of oxygen, heme, and menaquinone) cultivation on the growth kinetic, catalase production, oxygen uptake, and oxidative stress response of strains previously isolated from infant feces. Seven strains showed to consume oxygen under aerobic and respiratory conditions. The strain AL5 showed a catalase activity in both growth conditions, while AL3 showed this activity only in respiratory condition. Respiratory condition improved their tolerance to oxidative compounds (hydrogen peroxide and ROS generators) and further they showed promising probiotic features. The exploration of respiratory competent phenotypes with probiotic features may be extremely useful for the development of competitive starter or probiotic cultures.

摘要

由于活性氧(ROS)作用诱导的氧化损伤,氧气被认为是影响益生菌存活的主要因素之一。研究表明,乳酸菌的抗氧化应激能力很大程度上取决于细胞代谢类型。从发酵代谢转变为呼吸代谢(通过添加血红素和甲基萘醌并在有氧条件下)与生物量增加、长期存活以及抗氧化酶的产生有关。这项工作的目的是研究有氧培养(存在氧气)和呼吸培养(存在氧气、血红素和甲基萘醌)对先前从婴儿粪便中分离出的菌株的生长动力学、过氧化氢酶产生、氧气摄取和氧化应激反应的影响。七株菌株在有氧和呼吸条件下均表现出消耗氧气的能力。菌株AL5在两种生长条件下均表现出过氧化氢酶活性,而AL3仅在呼吸条件下表现出该活性。呼吸条件提高了它们对氧化化合物(过氧化氢和ROS产生剂)的耐受性,并且它们还表现出有前景的益生菌特性。探索具有益生菌特性的呼吸能力表型对于开发有竞争力的发酵剂或益生菌培养物可能非常有用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1641/5811513/4657bf9d29e0/fmicb-09-00157-g001.jpg

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