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Transcriptome landscape of a bacterial pathogen under plant immunity
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In planta bacterial RNA-Seq with bacterial isolation.
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In planta bacterial RNA-Seq without bacterial isolation
Multidimensional gene regulatory landscape of a bacterial pathogen in plants
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Global regulatory networks active in Pseudomonas syringae B728 during leaf colonization and in response to target environmental stresses: the GacS, SalA, RetS, AlgU, HrpL, RpoN, RpoS, AhlR and AefR regulons
PubMed Full text in PMC Similar studies Analyze with GEO2R
Analysis of gene expression in Arabidopsis thaliana after priming with BABA and infection with Pseudomonas syringae pv tomato DC3000
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P. syringae pv tomato DC3000 AlgU in planta regulon RNA-seq data
profiling of the root architecture response to phyllobacterium-Arabidopsis thaliana transcriptome analysis in ...
profiling of the pgpr induced systemic resistance (isr)-Arabidopsis thaliana transcriptome analysis in respons...
Modeling regulatory relationships in Arabidopsis immune signaling network.
Gene expression profiling study by RNA-seq in Arabidopsis thaliana infected by Vibrio vulnificus
Robust transcriptional indicators of plant immune cell death revealed by spatio-temporal transcriptome analyses
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Escalation in the host-pathogen arms race: a host resistance response corresponds to a heightened bacterial virulence response
Global transcriptional analysis reveals unique and shared responses in Arabidopsis thaliana exposed to combined drought and pathogen stress
Interactions between effector-triggered immunity (ETI) and pattern-triggered immunity (PTI) in an Arabidopsis dde2 ein2 pad4 sid2 mutant
Effect of flg22 peptide over transcriptome and nucleosome landscape of Arabidopsis on Col-0 and chromatin remodelling ATPase EDA16 mutants
Pathogen induced m6A dynamics regulate plant immunity
Cell type identity determines transcriptomic immune responses in Arabidopsis thaliana roots
Role of the Dickeya dadantii PecS regulator during the early stages of plant infection
Revealing global translational reprogramming as a fundamental layer of immune regulation in plants
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