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Ziren Qu

Showing results (1-10 of 4) with videos related to

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The Science of the Total Environment|January 6, 2024
Can high-yielding maize system decrease greenhouse gas emissions largely while simultaneously enhancing economic and ecosystem benefits through the "Rhizobiont" concept? Evidence from fieldYupeng Zhu, Ziren Qu, Jian Zhao, et al.
The Plant Journal : for Cell and Molecular Biology|April 28, 2024
Improving resilience to high temperature in drought: water replenishment enhances sucrose and amino acid metabolisms in maize grainXinglong Wang, Junhao Wang, Yupeng Zhu, et al.
Nature Communications|May 6, 2023
China can be self-sufficient in maize production by 2030 with optimal crop managementNing Luo, Qingfeng Meng, Puyu Feng, et al.
Journal of Advanced Research|February 19, 2026
Irrigation-driven intensification of wheat production in China: balancing sustainability and global food security in a changing climateDan Wei, Ning Luo, Matthew Tom Harrison, et al.
Pageof 1

Showing results (1-10 of 4) with videos related to

Sort By:
Pageof 1
The Science of the Total Environment|January 6, 2024
Can high-yielding maize system decrease greenhouse gas emissions largely while simultaneously enhancing economic and ecosystem benefits through the "Rhizobiont" concept? Evidence from fieldYupeng Zhu, Ziren Qu, Jian Zhao, et al.
The Plant Journal : for Cell and Molecular Biology|April 28, 2024
Improving resilience to high temperature in drought: water replenishment enhances sucrose and amino acid metabolisms in maize grainXinglong Wang, Junhao Wang, Yupeng Zhu, et al.
Nature Communications|May 6, 2023
China can be self-sufficient in maize production by 2030 with optimal crop managementNing Luo, Qingfeng Meng, Puyu Feng, et al.
Journal of Advanced Research|February 19, 2026
Irrigation-driven intensification of wheat production in China: balancing sustainability and global food security in a changing climateDan Wei, Ning Luo, Matthew Tom Harrison, et al.
Pageof 1