Progress in the construction of microbial cell factories for efficient biofuel production
X YAN, Z WANG, J LOU, H ZHANG… - Synthetic Biology …, 2023 - synbioj.cip.com.cn
Biofuels are important supplements and alternatives to fossil fuels, which can alleviate the
current global energy crisis and environmental pollution. Using microbes mined from nature …
current global energy crisis and environmental pollution. Using microbes mined from nature …
[HTML][HTML] Construction and application of high-quality genome-scale metabolic model of Zymomonas mobilis to guide rational design of microbial cell factories
High-quality genome-scale metabolic models (GEMs) could play critical roles on rational
design of microbial cell factories in the classical Design-Build-Test-Learn cycle of synthetic …
design of microbial cell factories in the classical Design-Build-Test-Learn cycle of synthetic …
A new Zymomonas mobilis platform strain for the efficient production of chemicals
Background Zymomonas mobilis is well known for its outstanding ability to produce ethanol
with both high specific productivity and with high yield close to the theoretical maximum. The …
with both high specific productivity and with high yield close to the theoretical maximum. The …
[HTML][HTML] Experimental and computational studies of the production of 1, 3-butadiene from 2, 3-butanediol using SiO2-supported H3PO4 derivatives
Silica-supported phosphoric acid and metal phosphate catalyzed 1, 3-butadiene (BDE)
production from 2, 3-butanediol (2, 3-BDO) was studied using experimental and …
production from 2, 3-butanediol (2, 3-BDO) was studied using experimental and …
Biofuel generations: New insights into challenges and opportunities in their microbe-derived industrial production
Biofuels, produced from organic materials such as plants, animal waste, and wood chips etc.
offer a sustainable and renewable alternative to fossil fuels. The biofuel production in terms …
offer a sustainable and renewable alternative to fossil fuels. The biofuel production in terms …
Development of a counterselectable system for rapid and efficient CRISPR-based genome engineering in Zymomonas mobilis
Y Zheng, H Fu, J Chen, J Li, Y Bian, P Hu, L Lei… - Microbial Cell …, 2023 - Springer
Background Zymomonas mobilis is an important industrial bacterium ideal for biorefinery
and synthetic biology studies. High-throughput CRISPR-based genome editing technologies …
and synthetic biology studies. High-throughput CRISPR-based genome editing technologies …
Identification and Characterization of 5′ Untranslated Regions (5′UTRs) in Zymomonas mobilis as Regulatory Biological Parts
SH Cho, K Haning, W Shen, C Blome, R Li… - Frontiers in …, 2017 - frontiersin.org
Regulatory RNA regions within a transcript, particularly in the 5′ untranslated region (5′
UTR), have been shown in a variety of organisms to control the expression levels of these …
UTR), have been shown in a variety of organisms to control the expression levels of these …
Genome Wide Phosphoproteome Analysis of Zymomonas mobilis Under Anaerobic, Aerobic, and N2-Fixing Conditions
Protein phosphorylation is a post-translational modification with widespread regulatory roles
in both eukaryotes and prokaryotes. Using mass spectrometry, we performed a genome …
in both eukaryotes and prokaryotes. Using mass spectrometry, we performed a genome …
Multiple Small RNAs Interact to Co-regulate Ethanol Tolerance in Zymomonas mobilis
sRNAs represent a powerful class of regulators that influences multiple mRNA targets in
response to environmental changes. However, very few direct sRNA–sRNA interactions …
response to environmental changes. However, very few direct sRNA–sRNA interactions …
Identification and characterization of ethanol‐inducible promoters of Zymomonas mobilis based on omics data and dual reporter–gene system
Zymomonas mobilis is a model bacterial ethanologen and has been engineered to produce
lignocellulosic biofuels and biochemicals such as 2, 3‐butanediol. We have previously …
lignocellulosic biofuels and biochemicals such as 2, 3‐butanediol. We have previously …