Transcriptional reprogramming is integral to effective plant defense. Pathogen effectors act transcriptionally and posttranscriptionally to suppress defense responses. A major challenge to understanding disease and defense responses is discriminating between transcriptional reprogramming associated with microbial-associated molecular pattern (MAMP)-triggered immunity (MTI) and that orchestrated by effectors. A high-resolution time course of genome-wide expression changes following challenge with Pseudomonas syringae pv tomato DC3000 and the nonpathogenic mutant strain DC3000hrpA- allowed us to establish causal links between the activities of pathogen effectors and suppression of MTI and infer with high confidence a range of processes specif...
We identified loci responsible for natural variation in Arabidopsis thaliana (Arabidopsis) responses...
We identified loci responsible for natural variation in Arabidopsis thaliana (Arabidopsis) responses...
Plant immune system comprises three main layers. Recognition of conserved microbe-associated molecul...
Transcriptional reprogramming is integral to effective plant defense. Pathogen effectors act transcr...
AcceptedArticleMicrobe associated molecular pattern (MAMP) receptors in plants recognize MAMPs and a...
Phytopathogens have developed methods to suppress, manipulate and avoid host defences though the pr...
Background: Effector proteins are translocated into host cells by plant-pathogens to undermine patte...
Plant defense responses to biotic stresses are complex biological processes, all governed by sophist...
Background Microbe-associated molecular patterns, such as those present in bacterial flagellin, are ...
Plant immune system comprises three main layers. Recognition of conserved microbe-associated molecul...
Plant immune system comprises three main layers. Recognition of conserved microbe-associated molecul...
We report the results of a genome-wide analysis of transcription in Arabidopsis thaliana after treat...
Hormones are central regulators of plant immunity. They can trigger large-scale reprogramming of the...
Hormones are central regulators of plant immunity. They can trigger large-scale reprogramming of the...
Hormones are central regulators of plant immunity. They can trigger large-scale reprogramming of the...
We identified loci responsible for natural variation in Arabidopsis thaliana (Arabidopsis) responses...
We identified loci responsible for natural variation in Arabidopsis thaliana (Arabidopsis) responses...
Plant immune system comprises three main layers. Recognition of conserved microbe-associated molecul...
Transcriptional reprogramming is integral to effective plant defense. Pathogen effectors act transcr...
AcceptedArticleMicrobe associated molecular pattern (MAMP) receptors in plants recognize MAMPs and a...
Phytopathogens have developed methods to suppress, manipulate and avoid host defences though the pr...
Background: Effector proteins are translocated into host cells by plant-pathogens to undermine patte...
Plant defense responses to biotic stresses are complex biological processes, all governed by sophist...
Background Microbe-associated molecular patterns, such as those present in bacterial flagellin, are ...
Plant immune system comprises three main layers. Recognition of conserved microbe-associated molecul...
Plant immune system comprises three main layers. Recognition of conserved microbe-associated molecul...
We report the results of a genome-wide analysis of transcription in Arabidopsis thaliana after treat...
Hormones are central regulators of plant immunity. They can trigger large-scale reprogramming of the...
Hormones are central regulators of plant immunity. They can trigger large-scale reprogramming of the...
Hormones are central regulators of plant immunity. They can trigger large-scale reprogramming of the...
We identified loci responsible for natural variation in Arabidopsis thaliana (Arabidopsis) responses...
We identified loci responsible for natural variation in Arabidopsis thaliana (Arabidopsis) responses...
Plant immune system comprises three main layers. Recognition of conserved microbe-associated molecul...