Enhancement of Digestive Enzyme Activity in Using ARTP Mutagenesis.

Fuente: PubMed
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Hauptverfasser: Yuan, Meng, Li, Zhengzhong, Zhou, Qunlan, Zheng, Xiaochuan, Sun, Cunxin, Liu, Bo, Wang, Aimin, Zhu, Aimin
Format: Artículo científico
Sprache:en
Veröffentlicht: Microorganisms 2024
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author Yuan, Meng
Li, Zhengzhong
Zhou, Qunlan
Zheng, Xiaochuan
Sun, Cunxin
Liu, Bo
Wang, Aimin
Zhu, Aimin
author_facet Yuan, Meng
Li, Zhengzhong
Zhou, Qunlan
Zheng, Xiaochuan
Sun, Cunxin
Liu, Bo
Wang, Aimin
Zhu, Aimin
Yuan, Meng
Li, Zhengzhong
Zhou, Qunlan
Zheng, Xiaochuan
Sun, Cunxin
Liu, Bo
Wang, Aimin
Zhu, Aimin
collection PubMed - marine biology
contents Enhancement of Digestive Enzyme Activity in Using ARTP Mutagenesis. Yuan, Meng Li, Zhengzhong Zhou, Qunlan Zheng, Xiaochuan Sun, Cunxin Liu, Bo Wang, Aimin Zhu, Aimin is used as a probiotic in animal and human food supplements. Atmospheric and room temperature plasma (ARTP) systems have frequently been used to screen for effective mutant probiotics. In this study, was treated with ARTP, and high-yielding digestive enzyme mutant strains were obtained by measuring the activities of α-amylase, lipase, and neutral protease. A total of 833 mutant strains were obtained after 40-60 s of ARTP treatment, and after screening for digestive enzyme activity, EF-448, EF-798, and EF-804 were obtained. The three strains demonstrated an 180% increase in α-amylase activity, a 30% increase in lipase activity, and a more than 40% increase in neutral protease activity. Furthermore, the enzyme activities remained stable after nine generations. In addition, the strains exhibited high auto-aggregation capacity (over 91%) and high cell hydrophobicity (over 93%). After exposure to simulated intestinal fluid for 6 h, the survival rates of EF-448 and EF-798 were 85.71% and 82.32%, respectively. Moreover, the three mutant strains retained antioxidant capacity and DPPH free radical scavenging ability, and there was no hemolysis. A safety experiment has shown that there is no mortality of within 14 days after receiving injections of mutant strains at different concentrations. In conclusion, this study obtained three mutant strains with high production of digestive enzymes and stable inheritance through ARTP mutagenesis of , providing an efficient microbial resource.
format Artículo científico
id pubmed_39770628
institution PubMed
language en
publishDate 2024
publisher Microorganisms
record_format pubmed
spellingShingle Enhancement of Digestive Enzyme Activity in Using ARTP Mutagenesis.
Yuan, Meng
Li, Zhengzhong
Zhou, Qunlan
Zheng, Xiaochuan
Sun, Cunxin
Liu, Bo
Wang, Aimin
Zhu, Aimin
Enhancement of Digestive Enzyme Activity in Using ARTP Mutagenesis. Yuan, Meng Li, Zhengzhong Zhou, Qunlan Zheng, Xiaochuan Sun, Cunxin Liu, Bo Wang, Aimin Zhu, Aimin is used as a probiotic in animal and human food supplements. Atmospheric and room temperature plasma (ARTP) systems have frequently been used to screen for effective mutant probiotics. In this study, was treated with ARTP, and high-yielding digestive enzyme mutant strains were obtained by measuring the activities of α-amylase, lipase, and neutral protease. A total of 833 mutant strains were obtained after 40-60 s of ARTP treatment, and after screening for digestive enzyme activity, EF-448, EF-798, and EF-804 were obtained. The three strains demonstrated an 180% increase in α-amylase activity, a 30% increase in lipase activity, and a more than 40% increase in neutral protease activity. Furthermore, the enzyme activities remained stable after nine generations. In addition, the strains exhibited high auto-aggregation capacity (over 91%) and high cell hydrophobicity (over 93%). After exposure to simulated intestinal fluid for 6 h, the survival rates of EF-448 and EF-798 were 85.71% and 82.32%, respectively. Moreover, the three mutant strains retained antioxidant capacity and DPPH free radical scavenging ability, and there was no hemolysis. A safety experiment has shown that there is no mortality of within 14 days after receiving injections of mutant strains at different concentrations. In conclusion, this study obtained three mutant strains with high production of digestive enzymes and stable inheritance through ARTP mutagenesis of , providing an efficient microbial resource.
title Enhancement of Digestive Enzyme Activity in Using ARTP Mutagenesis.
url https://pubmed.ncbi.nlm.nih.gov/39770628/