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Genome Biology|April 2, 2025
Integrative omics analysis reveals the genetic basis of fatty acid composition in Brassica napus seedsYuting Zhang, Yunhao Liu, Zhanxiang Zong, et al.Developmental Cell|January 14, 2025
Feedback regulation of m<sup>6</sup>A modification creates local auxin maxima essential for rice microsporogenesisPeng Cheng, Hu Zhao, Songyao Zhang, et al.Plant Physiology|July 23, 2024
Transcriptional regulation of transcription factor genes WRI1 and LAFL during Brassica napus seed developmentXu Han, Yan Peng, Sijie Yin, et al.Cell Reports Methods|September 8, 2025
Fragment dispersity index analysis of cfDNA fragments reveals chromatin accessibility and enables early cancer detectionYunze Wang, Yuying Hou, Zhankun Xiong, et al.Nucleic Acids Research|May 26, 2021
PlantDeepSEA, a deep learning-based web service to predict the regulatory effects of genomic variants in plantsHu Zhao, Zhuo Tu, Yinmeng Liu, et al.Nature Communications|August 2, 2024
Comprehensive mapping and modelling of the rice regulome landscape unveils the regulatory architecture underlying complex traitsTao Zhu, Chunjiao Xia, Ranran Yu, et al.Molecular Plant|May 24, 2026
Exploring the oasis of plant genomes: From genetic variations to function and beyondXu Han, Zhanxiang Zong, Weidong Ning, et al.Nature Communications|December 9, 2022
Limited conservation in cross-species comparison of GLK transcription factor binding suggested wide-spread cistrome divergenceXiaoyu Tu, Sibo Ren, Wei Shen, et al.Plant Communications|June 5, 2025
Chromatin accessibility dynamics and transcriptional regulatory networks underlying the primary nitrogen response in rice rootsWenhui Li, Xinxin Zhu, Junjiao Yang, et al.Genome Biology|November 8, 2022
Comprehensive transcriptional variability analysis reveals gene networks regulating seed oil content of Brassica napusZengdong Tan, Yan Peng, Yao Xiong, et al.Pageof 1