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Genome Research|July 3, 2019
Characterization of functional relationships of R-loops with gene transcription and epigenetic modifications in riceYuan Fang, Lifen Chen, Kande Lin, et al.Plant Biotechnology Journal|March 3, 2022
The Harbinger transposon-derived gene PANDA epigenetically coordinates panicle number and grain size in riceDonghai Mao, Shentong Tao, Xin Li, et al.Plant Biotechnology Journal|February 19, 2025
Modified carbon dot-mediated transient transformation for genomic and epigenomic studies in wheatLinwei She, Xuejiao Cheng, Peng Jiang, et al.Nature Communications|May 2, 2025
Suppressing an auxin efflux transporter enhances rice adaptation to temperate habitatsYanchun Cui, Lifang Huang, Peng Liu, et al.Plant Communications|January 1, 2026
Pyramiding elite alleles of genetically linked OsNRAMP5 and OsHMA3 confers low-Cd grains without compromising stress tolerance in riceLi Tang, Jiao Wang, Zhongying Ji, et al.Frontiers in Plant Science|October 7, 2016
Genetic Diversity, Rather than Cultivar Type, Determines Relative Grain Cd Accumulation in Hybrid RiceLiang Sun, Xiaxu Xu, Youru Jiang, et al.Journal of Hazardous Materials|November 20, 2021
Robust identification of low-Cd rice varieties by boosting the genotypic effect of grain Cd accumulation in combination with marker-assisted selectionLiang Sun, Ruigang Wang, Wenbang Tang, et al.Scientific Reports|November 2, 2017
Knockout of OsNramp5 using the CRISPR/Cas9 system produces low Cd-accumulating indica rice without compromising yieldLi Tang, Bigang Mao, Yaokui Li, et al.Molecular Plant|October 2, 2024
The metal tolerance protein OsMTP11 facilitates cadmium sequestration in the vacuoles of leaf vascular cells for restricting its translocation into rice grainsPeng Liu, Liang Sun, Yu Zhang, et al.Proceedings of the National Academy of Sciences of the United States of America|February 28, 2019
Natural variation in the HAN1 gene confers chilling tolerance in rice and allowed adaptation to a temperate climateDonghai Mao, Yeyun Xin, Yongjun Tan, et al.Pageof 6