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Plant, Cell & Environment|February 17, 2012
TFT6 and TFT7, two different members of tomato 14-3-3 gene family, play distinct roles in plant adaption to low phosphorus stressWeifeng Xu, Weiming Shi, Liguo Jia, et al.Plant Signaling & Behavior|July 28, 2012
Smart role of plant 14-3-3 proteins in response to phosphate deficiencyWeifeng Xu, Liguo Jia, Weiming Shi, et al.Planta|September 11, 2007
Altered expression of barley proline transporter causes different growth responses in ArabidopsisAkihiro Ueda, Weiming Shi, Takiko Shimada, et al.Trends in Plant Science|June 12, 2017
How Plant Root Exudates Shape the Nitrogen CycleDevrim Coskun, Dev T Britto, Weiming Shi, et al.The Science of the Total Environment|October 4, 2016
Biochar applied with appropriate rates can reduce N leaching, keep N retention and not increase NH<sub>3</sub> volatilization in a coastal saline soilHaijun Sun, Haiying Lu, Lei Chu, et al.Plant Physiology|October 16, 2015
Auxin Resistant1 and PIN-FORMED2 Protect Lateral Root Formation in Arabidopsis under Iron StressGuangjie Li, Haiyan Song, Baohai Li, et al.Frontiers in Plant Science|April 25, 2022
The Role of Plant Growth Regulators in Modulating Root Architecture and Tolerance to High-Nitrate Stress in TomatoRongting Ji, Ju Min, Yuan Wang, et al.Journal of Plant Physiology|June 26, 2020
Higher nitrogen use efficiency (NUE) in hybrid "super rice" links to improved morphological and physiological traits in seedling rootsMei Chen, Gui Chen, Dongwei Di, et al.Journal of Plant Physiology|April 30, 2024
Physiological and molecular mechanisms of plant-root responses to iron toxicityGuangjie Li, Jinlin Wu, Herbert J Kronzucker, et al.Trends in Plant Science|October 6, 2023
Nitrogen-loss and carbon-footprint reduction by plant-rhizosphere exudatesYufang Lu, Herbert J Kronzucker, Min Yu, et al.Pageof 13