Plants recognize microbes via specific pattern recognition receptors that are activated by microbe-associated molecular patterns (MAMPs), resulting in MAMP-triggered immunity (MTI). Successful pathogens bypass MTI in genetically diverse hosts via deployment of effectors (virulence factors) that inhibit MTI responses, leading to pathogen proliferation. Plant pathogenic bacteria like Pseudomonas syringae utilize a type III secretion system to deliver effectors into cells. These effectors can contribute to pathogen virulence or elicit disease resistance, depending upon the host plant genotype. In disease resistant genotypes, intracellular immune receptors, typically belonging to the nucleotide binding leucine-rich repeat family of proteins, pe...
AbstractType III pili deliver effector proteins (virulence factors) from bacterial pathogens to host...
Bacterial pathogens deliver type III effector proteins into the plant cell during infection. On susc...
We demonstrate that the interaction of the avirulence gene avrRpt2 and the cognate resistance gene R...
<div><p>Plants recognize microbes via specific pattern recognition receptors that are activated by m...
Plants recognize microbes via specific pattern recognition receptors that are activated by microbe-a...
Plants recognize microbes via specific pattern recognition receptors that are activated by microbe-a...
SummaryThe Arabidopsis NB-LRR immune receptor RPM1 recognizes the Pseudomonas syringae type III effe...
AbstractPlants have evolved a sophisticated innate immune system to recognize invading pathogens and...
The Arabidopsis NB-LRR immune receptor RPM1 recognizes the Pseudomonas syringae type III effectors A...
In Arabidopsis, RPM1 confers resistance against Pseudomonas syringae expressing either of two sequen...
Plant pathogenic Pseudomonas syringae deliver type III effector proteins into the host cell, where t...
AbstractType III pili deliver effector proteins (virulence factors) from bacterial pathogens to host...
AbstractIn Arabidopsis, RPM1 confers resistance against Pseudomonas syringae expressing either of tw...
Bacterial pathogens deliver type III effector proteins into the plant cell during infection. On susc...
Gram-negative phytopathogenic bacteria translocate effector proteins into plant cells to subvert hos...
AbstractType III pili deliver effector proteins (virulence factors) from bacterial pathogens to host...
Bacterial pathogens deliver type III effector proteins into the plant cell during infection. On susc...
We demonstrate that the interaction of the avirulence gene avrRpt2 and the cognate resistance gene R...
<div><p>Plants recognize microbes via specific pattern recognition receptors that are activated by m...
Plants recognize microbes via specific pattern recognition receptors that are activated by microbe-a...
Plants recognize microbes via specific pattern recognition receptors that are activated by microbe-a...
SummaryThe Arabidopsis NB-LRR immune receptor RPM1 recognizes the Pseudomonas syringae type III effe...
AbstractPlants have evolved a sophisticated innate immune system to recognize invading pathogens and...
The Arabidopsis NB-LRR immune receptor RPM1 recognizes the Pseudomonas syringae type III effectors A...
In Arabidopsis, RPM1 confers resistance against Pseudomonas syringae expressing either of two sequen...
Plant pathogenic Pseudomonas syringae deliver type III effector proteins into the host cell, where t...
AbstractType III pili deliver effector proteins (virulence factors) from bacterial pathogens to host...
AbstractIn Arabidopsis, RPM1 confers resistance against Pseudomonas syringae expressing either of tw...
Bacterial pathogens deliver type III effector proteins into the plant cell during infection. On susc...
Gram-negative phytopathogenic bacteria translocate effector proteins into plant cells to subvert hos...
AbstractType III pili deliver effector proteins (virulence factors) from bacterial pathogens to host...
Bacterial pathogens deliver type III effector proteins into the plant cell during infection. On susc...
We demonstrate that the interaction of the avirulence gene avrRpt2 and the cognate resistance gene R...