2011
DOI: 10.1371/journal.ppat.1001327
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The Lectin Receptor Kinase LecRK-I.9 Is a Novel Phytophthora Resistance Component and a Potential Host Target for a RXLR Effector

Abstract: In plants, an active defense against biotrophic pathogens is dependent on a functional continuum between the cell wall (CW) and the plasma membrane (PM). It is thus anticipated that proteins maintaining this continuum also function in defense. The legume-like lectin receptor kinase LecRK-I.9 is a putative mediator of CW-PM adhesions in Arabidopsis and is known to bind in vitro to the Phytophthora infestans RXLR-dEER effector IPI-O via a RGD cell attachment motif present in IPI-O. Here we show that LecRK-I.9 is… Show more

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Cited by 206 publications
(198 citation statements)
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“…For example, the rice Pi-d2 LecRK protein participates in the resistance mechanisms against Magnaporthe grisea (Chen et al, 2006) and RLK1 from N. glutinosa participates in the resistance mechanisms against Phytophthora capsici (Kim et al, 2010). In the group of L-type LecRKs, LRK1 from N. benthamiana interacts with the Phytophthora infestans elicitin INF1 and triggers INF1-induced cell death (Kanzaki et al, 2008), and the Arabidopsis thaliana LecRK-I.9 has been identified as a putative mediator of cell wall-plasma membrane adhesion during infection with Phytophthora species (Bouwmeester et al, 2011). LecRK-I.9 binds to a P. infestans effector protein through an RGD (Arg-Gly-Asp) motif that is also present as a cell attachment motif in extracellular matrix proteins that mediate cell adhesion to the cell walls (Bouwmeester et al, 2011).…”
Section: Na-lecrk1 Encodes a G-type Lectin Receptor Kinasementioning
confidence: 99%
“…For example, the rice Pi-d2 LecRK protein participates in the resistance mechanisms against Magnaporthe grisea (Chen et al, 2006) and RLK1 from N. glutinosa participates in the resistance mechanisms against Phytophthora capsici (Kim et al, 2010). In the group of L-type LecRKs, LRK1 from N. benthamiana interacts with the Phytophthora infestans elicitin INF1 and triggers INF1-induced cell death (Kanzaki et al, 2008), and the Arabidopsis thaliana LecRK-I.9 has been identified as a putative mediator of cell wall-plasma membrane adhesion during infection with Phytophthora species (Bouwmeester et al, 2011). LecRK-I.9 binds to a P. infestans effector protein through an RGD (Arg-Gly-Asp) motif that is also present as a cell attachment motif in extracellular matrix proteins that mediate cell adhesion to the cell walls (Bouwmeester et al, 2011).…”
Section: Na-lecrk1 Encodes a G-type Lectin Receptor Kinasementioning
confidence: 99%
“…In Nicotiana attenuata, LecRK1 was shown to suppress insect-mediated inhibition of jasmonic acid-induced defense responses (Gilardoni et al, 2011). Another LecRK with a potential role in plant defense is the Arabidopsis LecRK79/LecRK-I.9 (Gouget et al, 2006;Bouwmeester et al, 2011).…”
Section: Introductionmentioning
confidence: 99%
“…For this reason, we analyzed stable effector expression in planta, particularly for studying Arabidopsis-compatible pathosystems. Stable effector expression in planta allows us to test whether the ectopic expression of a given effector affects plant susceptibility toward the corresponding pathogen (Bozkurt et al 2011;Fabro et al 2011;Caillaud et al 2012) or even other pathogens (van Esse et al 2008;Hewezi et al 2010;Bouwmeester et al 2011;Fabro et al 2011). Using this approach, effectors from Hpa, including ATR13, were shown to suppress plant defenses, notably PAMP-induced ROS burst and callose deposition, which are typical indicators of plant immune response activation (Sohn et al 2007;Fabro et al 2011).…”
Section: Nuclear-harxls Give Various Developmental Phenotypes When Exmentioning
confidence: 99%