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- W2041715628 abstract "The rice blast fungus Magnaporthe oryzae infects plants with a specialized cell called an appressorium, which uses turgor to drive a rigid penetration peg through the rice leaf cuticle. Here, we show that NADPH oxidases (Nox) are necessary for septin-mediated reorientation of the F-actin cytoskeleton to facilitate cuticle rupture and plant cell invasion. We report that the Nox2–NoxR complex spatially organizes a heteroligomeric septin ring at the appressorium pore, required for assembly of a toroidal F-actin network at the point of penetration peg emergence. Maintenance of the cortical F-actin network during plant infection independently requires Nox1, a second NADPH oxidase, which is necessary for penetration hypha elongation. Organization of F-actin in appressoria is disrupted by application of antioxidants, whereas latrunculin-mediated depolymerization of appressorial F-actin is competitively inhibited by reactive oxygen species, providing evidence that regulated synthesis of reactive oxygen species by fungal NADPH oxidases directly controls septin and F-actin dynamics." @default.
- W2041715628 created "2016-06-24" @default.
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- W2041715628 date "2013-02-04" @default.
- W2041715628 modified "2023-10-03" @default.
- W2041715628 title "NADPH oxidases regulate septin-mediated cytoskeletal remodeling during plant infection by the rice blast fungus" @default.
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- W2041715628 doi "https://doi.org/10.1073/pnas.1217470110" @default.
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