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Zhenling Cui

Showing results (61-70 of 122) with videos related to

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Current Microbiology|November 13, 2013
A novel method of identifying Mycobacterium tuberculosis Beijing strains by detecting SNPs in Rv0444c and Rv2629Lu Zhang, Wenxi Xu, Zhenling Cui, et al.
Global Change Biology|August 17, 2019
Newer and select maize, wheat, and rice varieties can help mitigate N footprint while producing more grainHao Ying, Yulong Yin, Huifang Zheng, et al.
Journal of Environmental Management|July 11, 2025
Policy-driven improvements in cultivated land productivity: Changed determinants in Huang-Huai-Hai Plain, ChinaXueyuan Bai, Jie Zhang, Yujiao Lyu, et al.
Molecular Ecology|October 25, 2025
Temperature Increase in Paddy Soils Remodels the Relationship Between the Anaerobic Food Web and the Q10 of CH<sub>4</sub> ProductionYe Liu, Xingjie Wu, Carl-Eric Wegner, et al.
Environmental Research|March 11, 2020
Phosphorus flow analysis in the maize based food-feed-energy systems in ChinaZihan Wang, Tobias Edward Hartmann, Xiuheng Wang, et al.
The Science of the Total Environment|November 5, 2022
Cropland nitrous oxide emissions exceed the emissions of RCP 2.6: A global spatial analysisXingshuai Tian, Jiahui Cong, Hongye Wang, et al.
Molecular Cancer Research : MCR|November 8, 2018
Nuclear E-Cadherin Acetylation Promotes Colorectal Tumorigenesis via Enhancing β-Catenin ActivityYongxu Zhao, Tao Yu, Nan Zhang, et al.
Msystems|July 21, 2025
Time-series metatranscriptomics reveals differential salinity effects on the methanogenic food web in paddy soilXi Zhou, Xin Li, Qicheng Bei, et al.
BMC Evolutionary Biology|September 1, 2011
Perspective on sequence evolution of microsatellite locus (CCG)n in Rv0050 gene from Mycobacterium tuberculosisLianhua Qin, Jie Wang, Ruijuan Zheng, et al.
Global Change Biology|April 5, 2013
Closing the yield gap could reduce projected greenhouse gas emissions: a case study of maize production in ChinaZhenling Cui, Shanchao Yue, Guiliang Wang, et al.
Pageof 13

Showing results (61-70 of 122) with videos related to

Sort By:
Pageof 13
Current Microbiology|November 13, 2013
A novel method of identifying Mycobacterium tuberculosis Beijing strains by detecting SNPs in Rv0444c and Rv2629Lu Zhang, Wenxi Xu, Zhenling Cui, et al.
Global Change Biology|August 17, 2019
Newer and select maize, wheat, and rice varieties can help mitigate N footprint while producing more grainHao Ying, Yulong Yin, Huifang Zheng, et al.
Journal of Environmental Management|July 11, 2025
Policy-driven improvements in cultivated land productivity: Changed determinants in Huang-Huai-Hai Plain, ChinaXueyuan Bai, Jie Zhang, Yujiao Lyu, et al.
Molecular Ecology|October 25, 2025
Temperature Increase in Paddy Soils Remodels the Relationship Between the Anaerobic Food Web and the Q10 of CH<sub>4</sub> ProductionYe Liu, Xingjie Wu, Carl-Eric Wegner, et al.
Environmental Research|March 11, 2020
Phosphorus flow analysis in the maize based food-feed-energy systems in ChinaZihan Wang, Tobias Edward Hartmann, Xiuheng Wang, et al.
The Science of the Total Environment|November 5, 2022
Cropland nitrous oxide emissions exceed the emissions of RCP 2.6: A global spatial analysisXingshuai Tian, Jiahui Cong, Hongye Wang, et al.
Molecular Cancer Research : MCR|November 8, 2018
Nuclear E-Cadherin Acetylation Promotes Colorectal Tumorigenesis via Enhancing β-Catenin ActivityYongxu Zhao, Tao Yu, Nan Zhang, et al.
Msystems|July 21, 2025
Time-series metatranscriptomics reveals differential salinity effects on the methanogenic food web in paddy soilXi Zhou, Xin Li, Qicheng Bei, et al.
BMC Evolutionary Biology|September 1, 2011
Perspective on sequence evolution of microsatellite locus (CCG)n in Rv0050 gene from Mycobacterium tuberculosisLianhua Qin, Jie Wang, Ruijuan Zheng, et al.
Global Change Biology|April 5, 2013
Closing the yield gap could reduce projected greenhouse gas emissions: a case study of maize production in ChinaZhenling Cui, Shanchao Yue, Guiliang Wang, et al.
Pageof 13