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Molecular Plant-Microbe Interactions : MPMI|December 7, 2007
Dynamic regulation of GacA in type III secretion, pectinase gene expression, pellicle formation, and pathogenicity of Dickeya dadantii (Erwinia chrysanthemi 3937)Shihui Yang, Quan Peng, Qiu Zhang, et al.Phytopathology|June 21, 2023
Erwinia amylovora Type III Secretion System Inhibitors Reduce Fire Blight Infection Under Field ConditionsXiaochen Yuan, George W Sundin, Quan Zeng, et al.Applied and Environmental Microbiology|December 26, 2006
Global effect of indole-3-acetic acid biosynthesis on multiple virulence factors of Erwinia chrysanthemi 3937Shihui Yang, Qiu Zhang, Jianhua Guo, et al.The Science of the Total Environment|February 20, 2020
Functional relationships between aboveground and belowground spinach (Spinacia oleracea L., cv. Racoon) microbiomes impacted by salinity and droughtA Mark Ibekwe, Selda Ors, Jorge F S Ferreira, et al.Biosensors & Bioelectronics|March 27, 2018
Rapid detection of single E. coli bacteria using a graphene-based field-effect transistor deviceBhawana Thakur, Guihua Zhou, Jingbo Chang, et al.Molecular Plant Pathology|April 17, 2016
Identification of phenolic compounds that suppress the virulence of Xanthomonas oryzae on rice via the type III secretion systemSusu Fan, Fang Tian, Jianyu Li, et al.Molecular Plant-Microbe Interactions : MPMI|September 24, 2004
Genome-wide identification of plant-upregulated genes of Erwinia chrysanthemi 3937 using a GFP-based IVET leaf arrayShihui Yang, Nicole T Perna, Donald A Cooksey, et al.Applied and Environmental Microbiology|June 18, 2013
Discovery of plant phenolic compounds that act as type III secretion system inhibitors or inducers of the fire blight pathogen, Erwinia amylovoraDevanshi Khokhani, Chengfang Zhang, Yan Li, et al.Molecular Plant Pathology|January 24, 2021
An improved, versatile and efficient modular plasmid assembly system for expression analyses of genes in Xanthomonas oryzaeLifang Zou, Cuiping Zhang, Yilang Li, et al.Molecular Plant Pathology|July 3, 2014
Derivative of plant phenolic compound inhibits the type III secretion system of Dickeya dadantii via HrpX/HrpY two-component signal transduction and Rsm systemsYan Li, William Hutchins, Xiaogang Wu, et al.Pageof 9