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Kaixiang Shi
kaixiangshi@mail.hzau.edu.cn
Chinese, English
Hubei
Huazhong Agricultural University
Life Sciences
  • 2013.9-2018.6 Doctoral degree in Microbiology: Huazhong Agricultural University
  • 2009.9-2013.6 Bachelor's degree in Biological Sciences: Huazhong Agricultural University
  • 2021.10-Now - Huazhong Agricultural University - Associate Researcher
  • 2019.9-2020.11 - Florida International University - Visiting Scholar
  • 2018.7-2021.9 - Huazhong Agricultural University - Postdoctoral Researcher
Environmental Microbiology
Microbial Ecology
  • Arsenite mediates selenite resistance and reduction in Enterobacter sp. Z1, thereby enhancing bacterial survival in selenium environments., Yan Lan, Xiong Luo, Xia Fan, Gejiao Wang, Shixue Zheng, Kaixiang Shi, 2024
  • The utilization of Lysinibacillus bacterial powder to induce Fe plaque formation mitigates cadmium and chromium levels in rice., Qing Xu, Yuxiao Zhang, Ruijia Yang, Jinfang Li, Jiongxi Chen, Jingyi Wang, Gejiao Wang, Mingshun Li, Kaixiang Shi, 2024
  • Chromate-induced methylglyoxal detoxification system drives cadmium and chromate immobilization by Cupriavidus sp. MP-37., Xing Wang, Limin Zhong, Xueqi Huo, Naijiang Guo, Yao Zhang, Gejiao Wang, Kaixiang Shi, 2024
  • Cross-protection and cross-feeding between Enterobacter and Comamonas promoting their coexistence and cadmium tolerance in Oryza sativa L., Xing Wang, Naijiang Guo, Yao Zhang, Gejiao Wang, Kaixiang Shi, 2024
  • A PadR family transcriptional repressor regulates the transcription of chromate efflux transporter in Enterobacter sp. Z1., Xueqi Huo, Zijie Zhou, Hongliang Liu, Gejiao Wang, Kaixiang Shi, 2024
  • Mixed Enterobacter and Klebsiella bacteria enhance soybean biological nitrogen fixation ability when combined with rhizobia inoculation., Yuxiao Zhang, Qing Xu, Gejiao Wang, Kaixiang Shi, 2023
  • A coculture of Enterobacter and Comamonas species reduces cadmium accumulation in rice., Xing Wang, Qing Xu, Kang Hu, Gejiao Wang, Kaixiang Shi, 2023
  • Enterobacter sp. E1 increased arsenic uptake in Pteris vittata by promoting plant growth and dissolving Fe-bound arsenic., Aiting Li, Yingying Lu, Da Zhen, Ziheng Guo, Gejiao Wang, Kaixiang Shi, Shuijiao Liao, 2023
  • Simultaneous removal of nitrogen and arsenite by heterotrophic nitrification and aerobic denitrification bacterium Hydrogenophaga sp. H7., Xia Fan, Li Nie, Zhengjun Chen, Yongliang Zheng, Gejiao Wang, Kaixiang Shi, 2023
  • Arsenic removal via the biomineralization of iron-oxidizing bacteria Pseudarthrobacter sp. Fe7., Xia Fan, Hanxiao Zhang, Qian Peng, Yongliang Zheng, Kaixiang Shi, Xian Xia, 2023
  • Cd immobilization mechanisms in a Pseudomonas strain and its application in soil Cd remediation., Shijuan Wu, Zijie Zhou, Lin Zhu, Limin Zhong, Yixuan Dong, Gejiao Wang, Kaixiang Shi, 2022
  • Effective and stable adsorptive removal of cadmium(II) and lead(II) using selenium nanoparticles modified by microbial SmtA metallothionein., Zijie Zhou, Yixuan Dong, Lin Zhu, Xian Xia, Sikui Li, Gejiao Wang, Kaixiang Shi, 2022
  • Indole-acetic acid promotes ammonia removal through heterotrophic nitrification, aerobic denitrification with mixed Enterobacter sp. Z1 and Klebsiella sp. Z2., Yuxiao Zhang, Qing Xu, Gejiao Wang, Kaixiang Shi, 2022
Microorganisms Heavy Metals Detoxification Microbial Interactions Plant-Microbe Interactions Cadmium Chromium Arsenic Soil Remediation Bioremediation

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