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资源类型: 外文期刊
作者:Tian, Yong-Sheng(精确检索)
作者:Peng, Ri-He(精确检索)
作者:Yao, Quan-Hong(精确检索)
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1Metabolic Engineering of Escherichia coli for Methyl Parathion Degradation

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来源:FRONTIERS IN MICROBIOLOGY

关键词: methyl parathion; multigene metabolic engineering; methyl-parathion degradation; genetically engineered bacteria; synthetic biology

年份:2022

2Metabolic engineering of Oryza sativa for complete biodegradation of thiocyanate

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来源:SCIENCE OF THE TOTAL ENVIRONMENT

关键词: Thiocyanate; Phytoremediation; Thiocyanate hydrolase module; Metabolic engineering

年份:2022

3Metabolic engineering of Escherichia coli for direct production of vitamin C from D-glucose

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来源:BIOTECHNOLOGY FOR BIOFUELS AND BIOPRODUCTS

关键词: Vitamin C; One-step fermentation; D-Glucose; Synthesis pathway

年份:2022

4Characterization of a thermostable beta-glucuronidase from Thermotoga maritima expressed in Arabidopsis thaliana

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来源:APPLIED MICROBIOLOGY AND BIOTECHNOLOGY

关键词: Arabidopsis thaliana beta-Glucuronidase Thermostable enzyme Thermotoga maritima

年份:2012

5Improvement of the Thermostability of Xylanase from Thermobacillus composti through Site-Directed Mutagenesis

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来源:JOURNAL OF MICROBIOLOGY AND BIOTECHNOLOGY

关键词: Xylanase thermostability Thermobacillus composti disulfide bridge structure

年份:2017

6Phytoremediation of triphenylmethane dyes by overexpressing a Citrobacter sp triphenylmethane reductase in transgenic Arabidopsis

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来源:APPLIED MICROBIOLOGY AND BIOTECHNOLOGY

关键词: Phytoremediation Citrobacter sp. Triphenylmethane reductase Triphenylmethane dyes Transgenic Arabidopsis

年份:2013

7Transgenic Arabidopsis Plants Expressing Tomato Glutathione S-Transferase Showed Enhanced Resistance to Salt and Drought Stress

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来源:PLOS ONE

年份:2015

8AtCPK6, a functionally redundant and positive regulator involved in salt/drought stress tolerance in Arabidopsis

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来源:PLANTA

关键词: Arabidopsis Drought Functionally redundant Salt Stress tolerance

年份:2010

9Over-expression of AtGSTU19 provides tolerance to salt, drought and methyl viologen stresses in Arabidopsis

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来源:PHYSIOLOGIA PLANTARUM

10Characterization of a Glucose-, Xylose-, Sucrose-, and d-Galactose-Stimulated beta-Glucosidase from the Alkalophilic Bacterium Bacillus halodurans C-125

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来源:CURRENT MICROBIOLOGY

关键词: magnesium ion: 22537-22-0 open reading frame: ORF cadmium ion: 22537-48-0 zinc ion: 23713-49-7 ferric ion: 20074-52-6 o-nitrophenyl-beta-D-glucopyranoside glucose: 58367-01-4 sugar sucrose: 57-50-1 sugar xylose: 25990-60-7 sugar 453-amino acid protein: glycoside hydrolase family 1 D-galactose: 59-23-4 sugar enzyme activity alkaline condition

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