99久久夜色精品国产亚洲96_亚洲欧美综合色_91久久国产精品_自拍第一页_伊人久久超碰_日韩 欧美 综合

Applications
您當前的位置:首頁 >>SUPPORT&RESOURCES >>Applications

EVOL cell promotes adaptive evolution of Escherichia coli resistant to high osmotic pressure

來源:   作者: 發布日期:2024-03-28 訪問量:1384

EVOL cell promotes adaptive evolution of Escherichia coli resistant to high osmotic pressure 


Introduction 

          Salinization of soil has become a global problem related to human production activities. Under high-salt conditions, plants metabolic activities such as photosynthesis, respiration, and ion transport are greatly affected, leading to growth retardation, yield reduction, and even death. In industrial fermentation processes, it is usually necessary to add high concentrations of sugar or minerals to the reactor, during which microorganisms are prone to hyperosmotic stress, resulting in reduced growth and productivity. Therefore, how to improve the tolerance of organisms to harsh environments has become a key issue in industrial production activities. The traditional adaptive evolution usually places the microorganisms in a culture environment with special conditions (such as special substrates, hyperosmosis, pH value, etc.), and relys on researchers to repeatedly select microorganisms that grow faster, which has problems such as poor timeliness and heavy workload, and the domestication effect is often unsatisfactory.

          Automatic Microbial Adaptive Laboratory Evolution Instrument (EVOL cell) is a microbial domestication instrument developed based on the high permeability pipeline and single-phase microfluidic technology, with functions such as microbial cultivation, subculture, gradient addition of chemical factors, real-time detection, oxygen partial pressure control, etc., and can be applied to the cultivation and adaptive evolution of various microorganisms.


Experimental process

           Using 1% NaCl as the initial concentration of NaCl-resistant domestication of the strain, the total domestication time was 280 h, and 27 subcultures were completed automatically. Take out the strain when the NaCl concentration reached 2.4%, and compare the tolerance of the strain to NaCl before and after domestication in the shake flask culture system. The original strain and the tolerant strain were cultured in shake flasks in media containing 2% and 2.4% NaCl respectively, and the results were shown in Figure 2B. The growth of the strain domesticated in EVOL cell is better than that of the original strain in a medium with high NaCl concentration. After 10 h of culture in 2% shake flask, the OD values of the original strain and the tolerant strain reached 1.74 and 2.21 respectively, and the growth performance increased by 27.01%. After 10 h of culture in a 2.4% shake flask, the OD values of the original strain and the tolerant strain reached 1.43 and 2.09 respectively, and the growth performance increased by 46.15%. 


11_畫板 1


Figure 2 Adaptive evolution results of E. coli resistant to high NaCl concentration with EVOL cell



Conclusion

          In this case, Escherichia coli was used as the research object, and EVOL cell was used to conduct adaptive evolution of its NaCl tolerance to improve the strain's growth ability under high NaCl concentration environment. After 280 hours and 27 rounds of continuous automatic subculture evolution, E.coli had stable growth performance in a medium with high NaCl concentration, and its tolerance to NaCl has increased by 27.01~46.15%, which illustrated the important role of EVOL cell in strain improvement work. Automatic microbial adaptive laboratory evolution instrument greatly improves the automation of domestication work and reduces errors caused by man-made operation in experiments. Real-time detection also helps researchers grasp the growth of strains and adjust adaptive evolution strategies in a timely manner, which has become the future trend of adaptive evolution and cultivation of microorganisms in laboratories and industrial production.

EVOL cell promotes adaptive evolution of Escherichia coli resistant to high osmotic pressure 


Introduction 

          Salinization of soil has become a global problem related to human production activities. Under high-salt conditions, plants metabolic activities such as photosynthesis, respiration, and ion transport are greatly affected, leading to growth retardation, yield reduction, and even death. In industrial fermentation processes, it is usually necessary to add high concentrations of sugar or minerals to the reactor, during which microorganisms are prone to hyperosmotic stress, resulting in reduced growth and productivity. Therefore, how to improve the tolerance of organisms to harsh environments has become a key issue in industrial production activities. The traditional adaptive evolution usually places the microorganisms in a culture environment with special conditions (such as special substrates, hyperosmosis, pH value, etc.), and relys on researchers to repeatedly select microorganisms that grow faster, which has problems such as poor timeliness and heavy workload, and the domestication effect is often unsatisfactory.

          Automatic Microbial Adaptive Laboratory Evolution Instrument (EVOL cell) is a microbial domestication instrument developed based on the high permeability pipeline and single-phase microfluidic technology, with functions such as microbial cultivation, subculture, gradient addition of chemical factors, real-time detection, oxygen partial pressure control, etc., and can be applied to the cultivation and adaptive evolution of various microorganisms.


Experimental process

           Using 1% NaCl as the initial concentration of NaCl-resistant domestication of the strain, the total domestication time was 280 h, and 27 subcultures were completed automatically. Take out the strain when the NaCl concentration reached 2.4%, and compare the tolerance of the strain to NaCl before and after domestication in the shake flask culture system. The original strain and the tolerant strain were cultured in shake flasks in media containing 2% and 2.4% NaCl respectively, and the results were shown in Figure 2B. The growth of the strain domesticated in EVOL cell is better than that of the original strain in a medium with high NaCl concentration. After 10 h of culture in 2% shake flask, the OD values of the original strain and the tolerant strain reached 1.74 and 2.21 respectively, and the growth performance increased by 27.01%. After 10 h of culture in a 2.4% shake flask, the OD values of the original strain and the tolerant strain reached 1.43 and 2.09 respectively, and the growth performance increased by 46.15%. 


11_畫板 1


Figure 2 Adaptive evolution results of E. coli resistant to high NaCl concentration with EVOL cell



Conclusion

          In this case, Escherichia coli was used as the research object, and EVOL cell was used to conduct adaptive evolution of its NaCl tolerance to improve the strain's growth ability under high NaCl concentration environment. After 280 hours and 27 rounds of continuous automatic subculture evolution, E.coli had stable growth performance in a medium with high NaCl concentration, and its tolerance to NaCl has increased by 27.01~46.15%, which illustrated the important role of EVOL cell in strain improvement work. Automatic microbial adaptive laboratory evolution instrument greatly improves the automation of domestication work and reduces errors caused by man-made operation in experiments. Real-time detection also helps researchers grasp the growth of strains and adjust adaptive evolution strategies in a timely manner, which has become the future trend of adaptive evolution and cultivation of microorganisms in laboratories and industrial production.

Copyright 2022 ? Wuxi Tmaxtree Biotechnology Co., Ltd.
Please leave a message
驗證碼,看不清楚請點擊
Thank you for your inquiry, we will reply to you as soon as possible!
主站蜘蛛池模板: 国产精品福利久久 | 欧美香蕉 | 久久人人爽人人爽人人片av高清 | 成人欧美一区二区三区在线播放 | 色综合久久久久 | 精品国产一区二区三区日日嗨 | 91亚洲一区 | 欧美久久综合 | 国产精品二区三区 | 日日摸日日碰夜夜爽亚洲精品蜜乳 | 亚洲免费精品 | 国产成人免费视频网站高清观看视频 | 久久精彩视频 | 成人做爰9片免费视频 | 久久国产精品视频 | 91精品国产自产精品男人的天堂 | 91精品国产美女在线观看 | 天堂精品一区二区三区 | 蜜臀精品 | 久久综合一区二区 | 人人干人人看 | 成人免费网站www网站高清 | 亚洲天堂一区 | 久久国产一区二区 | 狠狠躁日日躁夜夜躁东南亚 | 在线中文字幕观看 | 久久精品无码一区二区三区 | 国产一区二区三区久久久久久久久 | 国产伦精品一区二区三区四区视频 | 日韩中文字幕在线免费观看 | 中文字幕精品一区久久久久 | 日韩一区免费在线观看 | 久久四色 | 中文字幕日韩一区 | 午夜精品91 | 欧美xxxⅹ性欧美大片 | 日本一区二区电影 | 久久国产综合 | 欧美精品网 | 99这里只有精品 | 国产精品一码二码三码在线 |