Literature DB >> 17322409

Roles for rice membrane dynamics and plasmodesmata during biotrophic invasion by the blast fungus.

Prasanna Kankanala1, Kirk Czymmek, Barbara Valent.   

Abstract

Rice blast disease is caused by the hemibiotrophic fungus Magnaporthe oryzae, which invades living plant cells using intracellular invasive hyphae (IH) that grow from one cell to the next. The cellular and molecular processes by which this occurs are not understood. We applied live-cell imaging to characterize the spatial and temporal development of IH and plant responses inside successively invaded rice (Oryza sativa) cells. Loading experiments with the endocytotic tracker FM4-64 showed dynamic plant membranes around IH. IH were sealed in a plant membrane, termed the extra-invasive hyphal membrane (EIHM), which showed multiple connections to peripheral rice cell membranes. The IH switched between pseudohyphal and filamentous growth. Successive cell invasions were biotrophic, although each invaded cell appeared to have lost viability when the fungus moved into adjacent cells. EIHM formed distinct membrane caps at the tips of IH that initially grew in neighboring cells. Time-lapse imaging showed IH scanning plant cell walls before crossing, and transmission electron microscopy showed IH preferentially contacting or crossing cell walls at pit fields. This and additional evidence strongly suggest that IH co-opt plasmodesmata for cell-to-cell movement. Analysis of biotrophic blast invasion will significantly contribute to our understanding of normal plant processes and allow the characterization of secreted fungal effectors that affect these processes.

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Year:  2007        PMID: 17322409      PMCID: PMC1867340          DOI: 10.1105/tpc.106.046300

Source DB:  PubMed          Journal:  Plant Cell        ISSN: 1040-4651            Impact factor:   11.277


  49 in total

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3.  tA single amino acid difference distinguishes resistant and susceptible alleles of the rice blast resistance gene Pi-ta.

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5.  The broad-spectrum blast resistance gene Pi9 encodes a nucleotide-binding site-leucine-rich repeat protein and is a member of a multigene family in rice.

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6.  Quantitative and qualitative influence of inoculation methods on in planta growth of rice blast fungus.

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  183 in total

1.  A plasmodesmata-localized protein mediates crosstalk between cell-to-cell communication and innate immunity in Arabidopsis.

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Journal:  Plant Cell       Date:  2011-09-20       Impact factor: 11.277

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Review 4.  Unifying themes in microbial associations with animal and plant hosts described using the gene ontology.

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Review 5.  Cells in cells: morphogenetic and metabolic strategies conditioning rice infection by the blast fungus Magnaporthe oryzae.

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6.  A novel blast resistance gene, Pi54rh cloned from wild species of rice, Oryza rhizomatis confers broad spectrum resistance to Magnaporthe oryzae.

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7.  Insights from sequencing fungal and oomycete genomes: what can we learn about plant disease and the evolution of pathogenicity?

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8.  An Arabidopsis GPI-anchor plasmodesmal neck protein with callose binding activity and potential to regulate cell-to-cell trafficking.

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Review 9.  Rise of a Cereal Killer: The Biology of Magnaporthe oryzae Biotrophic Growth.

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10.  Pex14/17, a filamentous fungus-specific peroxin, is required for the import of peroxisomal matrix proteins and full virulence of Magnaporthe oryzae.

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Journal:  Mol Plant Pathol       Date:  2016-12-19       Impact factor: 5.663

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