Engineering of a cellulose synthase gene improves brown rice processing efficiency and disease resistance
Xuewei Chen(Sichuan Agricultural University), Weitao Li(Sichuan Agricultural University), Jiang Xue Wan(State Key Laboratory of Plant Physiology and Biochemistry), Hai Qing(Sichuan Agricultural University), Yongyan Tang(Sichuan Agricultural University), Hong Min Yuan(Sichuan Agricultural University), Ye Dai(Shanghai University), Qing Xiong(Sichuan Agricultural University), Shigui Li(Sichuan Agricultural University), Xiang Lu(Chinese Academy of Sciences), Min He(Nanjing Agricultural University), Mawsheng Chern(University of California, Davis), Tuo Qi(Sichuan Agricultural University), Jing Wang(Sichuan Agricultural University), Qian Wang(Sichuan Agricultural University), Jiali Liu(Sichuan Agricultural University), Cheng Zhang(Sichuan Agricultural University), Long Wang(Sichuan Agricultural University), Wenming Wang(Yantai University), Junjie Yin(Sichuan Agricultural University), Mingwu Li(Sichuan Agricultural University), Yi Yang(National University of Defense Technology), Jing Shao(Sichuan Agricultural University), Yu Bi(Sichuan Agricultural University), Li Song(Sichuan Agricultural University), Yuan Miao(Henan University), Zhu Xiao(Sichuan Agricultural University), Xiaobo Zhu(ZheJiang Academy of Agricultural Sciences), Wei Yan(Xiamen University), Qingqing Hou(Sichuan Agricultural University)
Cited by 0
Related Papers
Comparison of RNA-seq and microarray-based models for clinical endpoint prediction
|Genome Biology|2015|429
A PP2C-1 Allele Underlying a Quantitative Trait Locus Enhances Soybean 100-Seed Weight
|Molecular Plant|2017|212
The nutrient absorption–transportation hypothesis: optimizing structural traits in absorptive roots
|New Phytologist|2016|166