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Nature Communications|January 3, 2025
Variation in a single allele drives divergent yield responses to elevated CO2 between rice subspeciesYunlong Liu, Siyu Zhang, Haoyu Qian, et al.Molecular Plant|June 24, 2026
Dual repression of OsSnRK1β1A by the deubiquitinase OsOTUB1 orchestrates energy metabolism and grain yield in riceLudan Zhang, Pengfei Wang, Yue Li, et al.Nature Communications|December 1, 2023
Soybean reduced internode 1 determines internode length and improves grain yield at dense plantingShichen Li, Zhihui Sun, Qing Sang, et al.Plant Biotechnology Journal|September 6, 2021
The wheat AGL6-like MADS-box gene is a master regulator for floral organ identity and a target for spikelet meristem development manipulationXingchen Kong, Fang Wang, Shuaifeng Geng, et al.Nature Communications|December 12, 2023
Epigenetic modifications regulate cultivar-specific root development and metabolic adaptation to nitrogen availability in wheatHao Zhang, Zhiyuan Jin, Fa Cui, et al.The Plant Cell|May 6, 2021
Natural allelic variation in a modulator of auxin homeostasis improves grain yield and nitrogen use efficiency in riceSiyu Zhang, Limei Zhu, Chengbo Shen, et al.Developmental Cell|August 25, 2022
A Ca2+-sensor switch for tolerance to elevated salt stress in ArabidopsisLeonie Steinhorst, Gefeng He, Lena K Moore, et al.Nature Plants|March 17, 2023
Population genomics unravels the Holocene history of bread wheat and its relativesXuebo Zhao, Yafei Guo, Lipeng Kang, et al.Science (New York, N.Y.)|February 8, 2020
Enhanced sustainable green revolution yield via nitrogen-responsive chromatin modulation in riceKun Wu, Shuansuo Wang, Wenzhen Song, et al.Nature Genetics|October 30, 2025
Precise control of chromatin loop extrusion enhances sustainable green revolution yield in riceQian Liu, Hui Liu, Lili Sun, et al.Pageof 14