During the plant immune response, large-scale transcriptional reprogramming is modulated by numerous transcription (co) factors. The Arabidopsis basic leucine zipper transcription factors TGA1 and TGA4, which comprise the clade I TGA factors, have been shown to positively contribute to disease resistance against virulent strains of the bacterial pathogen Pseudomonas syringae. Despite physically interacting with the key immune regulator, NON-EXPRESSOR OF PATHOGENESIS-RELATED GENES 1 (NPR1), following elicitation with salicylic acid (SA), clade I function was shown to be largely independent of NPR1. Unlike mutants in NPR1, tga1-1 tga4-1 plants do not display reductions in steady-state levels of SA-pathway marker genes following treatment with...
The Arabidopsis TGA family of basic leucine zipper transcription factors regulate the expression of ...
How plants defend themselves from microbial infection is one of the most critical issues for sustain...
SummaryCytokinins affect plant immunity to various pathogens; however, the mechanisms coupling plant...
During the plant immune response, large-scale transcriptional reprogramming is modulated by numerous...
<div><p>During the plant immune response, large-scale transcriptional reprogramming is modulated by ...
Transcriptional reprogramming during induction of salicylic acid (SA)-mediated defenses is regulated...
Plant immune system comprises three main layers. Recognition of conserved microbe-associated molecul...
International audienceThe three closely related Arabidopsis basic leucine zipper (bZIP) transcriptio...
The Arabidopsis genome contains six NPR1-related genes. Given the pivotal role played by NPR1 in con...
Plant defense against pathogens involve complex interplay of several defense-associated factors. Th...
The Arabidopsis NPR1 protein is essential for regulating salicylic acid–dependent gene expression du...
Plants have the ability to acquire an enhanced level of resistance to pathogen attack after being ex...
Plant defense responses to biotic stresses are complex biological processes, all governed by sophist...
In dicotyledonous plants broad-spectrum resistance to pathogens is established after the induction o...
Continuously exposed to the challenges from various kinds of pathogens, plants have evolved multilay...
The Arabidopsis TGA family of basic leucine zipper transcription factors regulate the expression of ...
How plants defend themselves from microbial infection is one of the most critical issues for sustain...
SummaryCytokinins affect plant immunity to various pathogens; however, the mechanisms coupling plant...
During the plant immune response, large-scale transcriptional reprogramming is modulated by numerous...
<div><p>During the plant immune response, large-scale transcriptional reprogramming is modulated by ...
Transcriptional reprogramming during induction of salicylic acid (SA)-mediated defenses is regulated...
Plant immune system comprises three main layers. Recognition of conserved microbe-associated molecul...
International audienceThe three closely related Arabidopsis basic leucine zipper (bZIP) transcriptio...
The Arabidopsis genome contains six NPR1-related genes. Given the pivotal role played by NPR1 in con...
Plant defense against pathogens involve complex interplay of several defense-associated factors. Th...
The Arabidopsis NPR1 protein is essential for regulating salicylic acid–dependent gene expression du...
Plants have the ability to acquire an enhanced level of resistance to pathogen attack after being ex...
Plant defense responses to biotic stresses are complex biological processes, all governed by sophist...
In dicotyledonous plants broad-spectrum resistance to pathogens is established after the induction o...
Continuously exposed to the challenges from various kinds of pathogens, plants have evolved multilay...
The Arabidopsis TGA family of basic leucine zipper transcription factors regulate the expression of ...
How plants defend themselves from microbial infection is one of the most critical issues for sustain...
SummaryCytokinins affect plant immunity to various pathogens; however, the mechanisms coupling plant...