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Gene|August 13, 2018
Transcriptional analysis identifies major pathways as response components to Sporisorium scitamineum stress in sugarcaneNing Huang, Hui Ling, Yachun Su, et al.Gene|February 20, 2022
Characterization of silicon transporter gene family in Saccharum and functional analysis of the ShLsi6 gene in biotic stressGuangli Cen, Tingting Sun, Yanling Chen, et al.Scientific Reports|February 8, 2017
A sugarcane R2R3-MYB transcription factor gene is alternatively spliced during drought stressJinlong Guo, Hui Ling, Jingjing Ma, et al.BMC Genomics|July 19, 2021
The CaCA superfamily genes in Saccharum: comparative analysis and their functional implications in response to biotic and abiotic stressWeihua Su, Chang Zhang, Dongjiao Wang, et al.Frontiers in Plant Science|April 27, 2019
The Physiological and Agronomic Responses to Nitrogen Dosage in Different Sugarcane VarietiesYingying Yang, Shiwu Gao, Yong Jiang, et al.BMC Genomics|June 20, 2018
Identification and evaluation of PCR reference genes for host and pathogen in sugarcane-Sporisorium scitamineum interaction systemNing Huang, Hui Ling, Feng Liu, et al.BMC Plant Biology|December 12, 2018
Foreign cry1Ac gene integration and endogenous borer stress-related genes synergistically improve insect resistance in sugarcaneDinggang Zhou, Xiaolan Liu, Shiwu Gao, et al.Plant Physiology and Biochemistry : PPB|February 27, 2026
From major crops to sugarcane: Rethinking nitrogen use efficiency for a sustainable futureJingtao Yang, Peixia Lin, Qinghong Liu, et al.Plant Cell Reports|June 1, 2024
Sugarcane ScOPR1 gene enhances plant disease resistance through the modulation of hormonal signaling pathwaysWenhui Zou, Tingting Sun, Yao Chen, et al.Journal of Agricultural and Food Chemistry|April 23, 2024
Transcriptional Regulation of SugarCane Response to <i>Sporisorium scitamineum</i>: Insights from Time-Course Gene Coexpression and Ca<sup>2+</sup> SignalingQibin Wu, Chang Zhang, Fu Xu, et al.Pageof 8