Environmental Stress on Limosilactobacillus fermentum JNU532's Cellular Characteristics and Fatty Acid Profile.

IF 4.2 3区 农林科学 Q2 FOOD SCIENCE & TECHNOLOGY
Ziyao Meng, Sejong Oh
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Abstract

This study aimed to investigate the effects of various growth conditions and nutritional stress on the rate of cell development, auto and co-aggregation abilities, cell surface hydrophobicity, adherence to HT-29 cells, and changes in cellular fatty acid composition of Limosilactobacillus fermentum JNU532 (JNU532). The strain JNU532 was exposed to different stressors, including temperature variations (37°C and 42°C), salt (3% NaCl), acid (pH 4), and alkali (pH 8). Following exposure to temperature stress at 42°C, the strain demonstrated the highest levels of auto- and co-aggregation, but the lowest levels of hydrophobicity and adhesion abilities. Under acidic conditions, the strain's development remained stable, but its auto and co-aggregation abilities were enhanced compared to those grown at a temperature of 37°C and pH 6.5. Moreover, JNU532 grown at pH 4 showed relatively high cell surface hydrophobicity and adhesion abilities. However, the strain exhibited the greatest adhesion capacity when subjected to alkaline stress compared to the control and other stress groups. Gas chromatography was used to isolate and quantitatively assess the levels of intracellular oleic acid and its post-synthetic derivatives, including cis-9,10-methyleneoctadecanoic acid (C19:0 cyclo ɷ8c) and C19:0 cyclo ɷ10c/19ɷ6. The JNU532 exhibited the highest amount of oleic acid during temperature stress at 42°C. Furthermore, JNU532 demonstrated the highest yield of the oleic acid cyclopropanation product C19:0 cyclo ɷ10c/19ɷ6 under acidic conditions (pH 4). Therefore, this study the application of JNU 532 as a probiotic in the food and milk industry has laid a theoretical foundation.

环境胁迫对发酵乳酸杆菌JNU532细胞特性及脂肪酸谱的影响
本研究旨在研究不同生长条件和营养胁迫对发酵乳酸杆菌JNU532 (Limosilactobacillus fermentum JNU532)细胞发育速率、自聚集和共聚集能力、细胞表面疏水性、对HT-29细胞的粘附以及细胞脂肪酸组成变化的影响。将菌株JNU532分别置于温度(37°C和42°C)、盐(3% NaCl)、酸(pH 4)和碱(pH 8)等不同胁迫条件下。在42°C的温度胁迫下,菌株表现出最高水平的自聚集和共聚集,但最低水平的疏水性和粘附能力。在酸性条件下,菌株的生长保持稳定,但其自聚集和共聚集能力比在37℃和pH 6.5条件下生长的菌株增强。此外,在pH 4下生长的JNU532表现出较高的细胞表面疏水性和粘附能力。然而,与对照组和其他应激组相比,菌株在碱性胁迫下表现出最大的粘附能力。采用气相色谱法分离并定量评价细胞内油酸及其合成后衍生物的含量,包括顺式9,10-亚甲基十八烷酸(C19:0 cyclo 8c)和C19:0 cyclo 10c/19 6。JNU532在42℃温度胁迫下油酸含量最高。此外,JNU532在酸性条件(pH 4)下油酸环丙烷化产物C19:0 cyclo - 10c/19 - 6的产率最高。因此,本研究为JNU 532作为益生菌在食品和牛奶工业中的应用奠定了理论基础。
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来源期刊
Food Science of Animal Resources
Food Science of Animal Resources Agricultural and Biological Sciences-Animal Science and Zoology
CiteScore
6.70
自引率
6.70%
发文量
75
期刊介绍: Food Science of Animal Resources (Food Sci. Anim. Resour.) is an international, peer-reviewed journal publishing original research and review articles on scientific and technological aspects of chemistry, biotechnology, processing, engineering, and microbiology of meat, egg, dairy, and edible insect/worm products.
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