Cuiqing Ma is exploring Enzyme as part of his Biotransformation and Metabolic engineering and Enzyme studies. His work in Biochemistry is not limited to one particular discipline; it also encompasses Catalysis. His work on Biochemistry expands to the thematically related Catalysis. Cuiqing Ma regularly links together related areas like Sulfur in his Organic chemistry studies. His Fermentation study frequently draws parallels with other fields, such as Acetoin. His research brings together the fields of Fermentation and Acetoin. Genetics is closely attributed to Receptor in his research. His Food science study frequently links to related topics such as 2,3-Butanediol. His 2,3-Butanediol study frequently links to other fields, such as Food science.
His work on Biochemistry is being expanded to include thematically relevant topics such as NAD+ kinase. His NAD+ kinase study frequently draws connections between related disciplines such as Biochemistry. Cuiqing Ma performs multidisciplinary study on Genetics and Microbiology in his works. Cuiqing Ma performs multidisciplinary studies into Microbiology and Bacteria in his work. He undertakes interdisciplinary study in the fields of Bacteria and Lactic acid through his research. His Genetics research extends to Lactic acid, which is thematically connected. In his work, Cuiqing Ma performs multidisciplinary research in Enzyme and Dehydrogenase. He performs integrative study on Dehydrogenase and Enzyme in his works. He undertakes multidisciplinary studies into Gene and Escherichia coli in his work.
His Enzyme study is focused on Allosteric regulation, Pseudomonas putida and Dehydrogenase. By researching both Biochemistry and Organic chemistry, Cuiqing Ma produces research that crosses academic boundaries. Cuiqing Ma integrates many fields in his works, including Organic chemistry and Biochemistry. He merges many fields, such as Gene and Cell biology, in his writings. Cuiqing Ma performs multidisciplinary study in the fields of Cell biology and Gene via his papers. His research on Fermentation frequently connects to adjacent areas such as 2,3-Butanediol. His study connects Fermentation and 2,3-Butanediol. Many of his studies involve connections with topics such as Lactose and Food science. His Lactose study frequently intersects with other fields, such as Food science.
His studies link Regulator with Gene. His research is interdisciplinary, bridging the disciplines of Genetics and Regulator. Genetics and Cell biology are two areas of study in which he engages in interdisciplinary work. Cuiqing Ma incorporates Cell biology and Gene in his studies. He combines topics linked to 2019-20 coronavirus outbreak with his work on Virology. 2019-20 coronavirus outbreak is often connected to Pathology in his work. His research combines Pandemic and Pathology. His Pandemic study frequently links to other fields, such as Coronavirus disease 2019 (COVID-19). Coronavirus disease 2019 (COVID-19) and Coronavirus are frequently intertwined in his study.
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Biotechnological routes based on lactic acid production from biomass.
Chao Gao;Cuiqing Ma;Ping Xu.
Biotechnology Advances (2011)
Enhanced 2,3-butanediol production by Klebsiella pneumoniae SDM
Cuiqing Ma;Ailong Wang;Jiayang Qin;Lixiang Li.
Applied Microbiology and Biotechnology (2009)
Degradation of n-alkanes and polycyclic aromatic hydrocarbons in petroleum by a newly isolated Pseudomonas aeruginosa DQ8.
Zhengzhi Zhang;Zhaowei Hou;Chunyu Yang;Cuiqing Ma.
Bioresource Technology (2011)
Butanol production by Clostridium beijerinckii ATCC 55025 from wheat bran
Ziyong Liu;Yu Ying;Fuli Li;Cuiqing Ma.
Journal of Industrial Microbiology & Biotechnology (2010)
Systematic metabolic engineering of Escherichia coli for high-yield production of fuel bio-chemical 2,3-butanediol
Youqiang Xu;Haipei Chu;Chao Gao;Fei Tao.
(2014)
Characterization and biotechnological potential of petroleum-degrading bacteria isolated from oil-contaminated soils.
Zhengzhi Zhang;Lixue Gai;Lixue Gai;Zhaowei Hou;Chunyu Yang.
Bioresource Technology (2010)
Efficient production of L-lactic acid from corncob molasses, a waste by-product in xylitol production, by a newly isolated xylose utilizing Bacillus sp. strain.
Limin Wang;Bo Zhao;Bo Liu;Bo Yu.
Bioresource Technology (2010)
Highly efficient production of d -lactate by Sporolactobacillus sp. CASD with simultaneous enzymatic hydrolysis of peanut meal
Limin Wang;Bo Zhao;Fengsong Li;Ke Xu.
Applied Microbiology and Biotechnology (2011)
Enhanced vanillin production from ferulic acid using adsorbent resin.
Dongliang Hua;Cuiqing Ma;Lifu Song;Shan Lin.
Applied Microbiology and Biotechnology (2007)
Medium optimization by combination of response surface methodology and desirability function: an application in glutamine production.
Jinshan Li;Cuiqing Ma;Yanhe Ma;Yan Li.
Applied Microbiology and Biotechnology (2007)
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