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Yong Tao
taoyong@cib.ac.cn
English, Chinese
Sichuan
University of Chinese Academy of Sciences
Life Sciences
  • 2016-07--2016-10 Visiting Scholar: Auburn University, USA
  • 2001-09--2006-06 Master's and PhD: Sichuan University
  • 2016-07~2016-10 - Auburn University - Visiting Scholar
  • 2009-01~Present - Chengdu Institute of Biology, Chinese Academy of Sciences - Associate Researcher
  • 2006-07~2009-01 - Chengdu Institute of Biology, Chinese Academy of Sciences - Assistant Researcher
Microbial Resource Exploration and Application
Microbial Fermentation and Metabolic Regulation
Environmental Microbiology
  • Mechanisms for the Enhancement of Caproic Acid and H2 Production in Ruminococcaceae Bacterium CPB6 by Fe(II) and Mg(II): Growth and Gene Transcription Analyses, Not mentioned, 2024
  • Seasonal dynamics of the microbial community in a strong-flavor baijiu fermentation, Not mentioned, 2024
  • 基因编辑技术在产溶剂梭菌中的应用, Not mentioned, 2023
  • Microbial Ecological Mechanism for Long-Term Production of High Concentrations of n-Caproate via Lactate-Driven Chain Elongation, Not mentioned, 2021
  • Genome-Wide Transcriptomic Analysis of n-Caproic Acid Production in Ruminococcaceae Bacterium CPB6 with Lactate Supplementation, Not mentioned, 2021
  • Butyryl/Caproyl-CoA:Acetate CoA-transferase: cloning, expression and characterization of the key enzyme involved in medium-chain fatty acid biosynthesis, Not mentioned, 2021
  • 瘤胃菌与乳酸菌共培养利用葡萄糖合成己酸, Not mentioned, 2021
  • Transcriptional response of Pseudomonas chenduensis strain MBR to cadmium toxicity, Not mentioned, 2020
  • Cloning and characterization of a l-lactate dehydrogenase gene from Ruminococcaceae bacterium CPB6, Not mentioned, 2020
  • Dynamics and potential roles of abundant and rare subcommunities in the bioremediation of cadmium-contaminated paddy soil by Pseudomonas chenduensis, Not mentioned, 2019
  • Effects of Pseudomonas chenduensis and biochar on cadmium availability and microbial community in the paddy soil, Not mentioned, 2018
  • Improvement of n-caproic acid production with Ruminococcaceae bacterium CPB6: selection of electron acceptors and carbon sources and optimization of the culture medium, Not mentioned, 2018
  • Production of high-concentration n-caproic acid from lactate through fermentation using a newly isolated Ruminococcaceae bacterium CPB6, Not mentioned, 2017
  • The process-related dynamics of microbial community during a simulated fermentation of Chinese strong-flavored liquor, Not mentioned, 2017
  • The functional potential and active populations of the pit mud microbiome for the production of Chinese strong-flavour liquor, Not mentioned, 2017
  • Complete genome sequence of Ruminococcaceae bacterium CPB6: A newly isolated culture for efficient n-caproic acid production from lactate, Not mentioned, 2017
  • Production of Butyrate from Lactate by a Newly Isolated Clostridium sp. BPY5, Not mentioned, 2016
  • Production of Butyrate from Lactate by a Newly Isolated Clostridium sp BPY5, Not mentioned, 2016
  • 一株新的毛螺旋菌-BTY6的分离与鉴定, Not mentioned, 2016
  • 乳酸合成丁酸的工艺构建及其条件优化, Not mentioned, 2016
  • Clostridium liquoris sp. nov., isolated from a fermentation pit used for the production of Chinese Strong-Flavored Liquor., Not mentioned, 2016
  • Microorganism-regulated mechanisms of temperature effects on the performance of anaerobic digestion, Not mentioned, 2016
  • 浓香型白酒窖泥中优势菌群的定量PCR分析, Not mentioned, 2015
  • The synthesis of n-caproate from lactate: a new efficient process for medium-chain carboxylates production, Not mentioned, 2015
  • Promotion of Ni2+ Removal by Masking Toxicity to Sulfate-Reducing Bacteria: Addition of Citrate, Not mentioned, 2015
  • Prokaryotic Communities in Pit Mud from Different-Aged Cellars Used for the Production of Chinese Strong-Flavored Liquor, Not mentioned, 2014
  • 浓香型白酒窖泥中细菌和古菌的组成与多样性, Not mentioned, 2014
  • Ammonia as carbon-free substrate for hydrogen production in bioelectrochemical systems, Not mentioned, 2014
  • Anodic ammonia oxidation to nitrogen gas catalyzed by mixed biofilms in bioelectrochemical systems, Not mentioned, 2014
  • 生物电化学系统固定二氧化碳同时产生乙酸和丁酸, Not mentioned, 2014
  • Pseudomonas chengduensis sp nov., isolated from landfill leachate, Not mentioned, 2014
  • 高浓度氨氮废水短程硝化及氨氧化菌群分析, Not mentioned, 2013
  • 硫酸粘菌素生产废水的硝化反硝化生物脱氮, Not mentioned, 2013
  • Presence of Fe3+ and Zn2+ promoted biotransformation of Cd-citrate complex and removal of metals from solutions, Not mentioned, 2013
  • 生物电化学系统还原二氧化碳同时合成甲烷和乙酸, Not mentioned, 2013
  • 光合细菌对水产养殖环境细菌群落结构的影响, Not mentioned, 2013
  • Bioelectrochemical systems for simultaneously production of methane and acetate from carbon dioxide at relatively high rate, Not mentioned, 2013
  • 变形虫Naegleria sp. TH8的分离鉴定及食藻特性的初步研究, Not mentioned, 2012
  • Dissimilatory nitrate reduction by Pseudomonas alcaliphila with an electrode as the sole electron donor, Not mentioned, 2012
  • 变形虫Naegleria sp.TH8的分离鉴定及食藻特性, Not mentioned, 2012
  • Sulfate reduction with electrons directly derived from electrodes in bioelectrochemical systems, Not mentioned, 2012
  • 氮磷胁迫下藻-菌群落的变化研究, Not mentioned, 2012
  • 假单胞菌MBR还原钛(Ⅳ)合成钛纳米粒子, Not mentioned, 2012
  • Analysis of water quality factors influencing the speciation of inorganic nitrogen using GRA, Not mentioned, 2011
  • 剑南春窖泥理化特性及矿质元素变化趋势研究, Not mentioned, 2011
  • 窖泥细菌群落结构演替及其与环境因子的相关性, Not mentioned, 2011
  • 岷江中游成都段河流无机氮形态影响因素初步分析, Not mentioned, 2011
  • Nitrification and nitrifying bacteria in the Chengdu section of middle Min River (China), Not mentioned, 2011
  • 洛阳石化PTA废水生物处理系统污泥膨胀原因解析, Not mentioned, 2011
  • 硝化渗滤液回灌对填埋垃圾反硝化、产甲烷及稳定化的影响, Not mentioned, 2011
  • Autotrophic nitrogen removal from ammonium at low applied voltage in a single-compartment microbial electrolysis cel., Not mentioned, 2011
  • 太湖梅梁湾附生细菌和游离细菌群落结构分析, Not mentioned, 2011
  • 一株假单胞菌MBR对亚碲酸盐的好氧还原特征, Not mentioned, 2011
  • 一株假单胞菌(PseudomonasalcaliphilaMBR)好氧还原亚硒酸钠为红色单质硒, Not mentioned, 2010
  • 高温自养硝化反硝化工艺研究, Not mentioned, 2010
  • 锦江中氨氮污染及生物转化特征分析, Not mentioned, 2010
  • 溶微囊藻细菌的富集筛选及其菌群结构特征, Not mentioned, 2009
  • 不同C/N值下亚硝酸盐氧化菌和异养菌混合体系的微生物多样性(英文)
Microbial Resource Exploration Application Microbial Fermentation Metabolic Regulation Environmental Microbiology Anaerobic Bacteria Biotechnology Gene Transcription Bioengineering Bioremediation

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