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Plant Physiology|May 7, 2025
An automated root phenotype platform enables nondestructive high-throughput root system architecture dissection in wheatZhen Zhang, Xiaolong Qiu, Guanghui Guo, et al.Microbiome|February 27, 2021
Dicer-like proteins influence Arabidopsis root microbiota independent of RNA-directed DNA methylationRicha Kaushal, Li Peng, Sunil K Singh, et al.Nature Protocols|November 28, 2023
A platform for whole-genome speed introgression from Aegilops tauschii to wheat for breeding future cropsHao Li, Lele Zhu, Ruixiao Fan, et al.Plant Physiology|April 30, 2025
An automated root phenotype platform enables nondestructive high-throughput root system architecture dissection in wheatZhen Zhang, Xiaolong Qiu, Guanghui Guo, et al.The EMBO Journal|December 6, 2019
Rhizobacterium-derived diacetyl modulates plant immunity in a phosphate-dependent mannerRafael Jl Morcillo, Sunil K Singh, Danxia He, et al.Nature Communications|July 20, 2023
A maize epimerase modulates cell wall synthesis and glycosylation during stomatal morphogenesisYusen Zhou, Tian Zhang, Xiaocui Wang, et al.The Plant Cell|February 15, 2022
The maize single-nucleus transcriptome comprehensively describes signaling networks governing movement and development of grass stomataGuiling Sun, Mingzhang Xia, Jieping Li, et al.The New Phytologist|July 12, 2024
Integrating high-throughput phenotyping and genome-wide association studies for enhanced drought resistance and yield prediction in wheatZhen Zhang, Yunfeng Qu, Feifei Ma, et al.Nature Plants|May 28, 2021
Introgressing the Aegilops tauschii genome into wheat as a basis for cereal improvementYun Zhou, Shenglong Bai, Hao Li, et al.Nature Plants|March 28, 2025
Horizontally acquired CSP genes contribute to wheat adaptation and improvementKai Wang, Guanghui Guo, Shenglong Bai, et al.Pageof 13