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Roles for rice membrane dynamics and plasmodesmata during biotrophic invasion by the blast fungus.
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Translocation of Magnaporthe oryzae effectors into rice cells and their subsequent cell-to-cell movement.
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Disruption of the Interfacial Membrane Leads to Effector Re-location and Lifestyle Switch During Rice Blast Disease.
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TOR-autophagy branch signaling via Imp1 dictates plant-microbe biotrophic interface longevity.
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Evidence for a transketolase-mediated metabolic checkpoint governing biotrophic growth in rice cells by the blast fungus Magnaporthe oryzae.
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A single fungal MAP kinase controls plant cell-to-cell invasion by the rice blast fungus.
Science. 2018 Mar 23;359(6382):1399-1403. doi: 10.1126/science.aaq0892.

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PDLP5, a plasmodesmata permeability regulator, can traffic between plant cells.
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Mechanisms of regulated cell death during plant infection by the rice blast fungus Magnaporthe oryzae.
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Molecular basis for loss of virulence in strain AM16.
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PUFA-PLs biosynthesis enzymes contribute to pathogenic development of rice blast fungus .
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Membrane fluidity control by the Magnaporthe oryzae acyl-CoA binding protein sets the thermal range for host rice cell colonization.
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Development of the particle inflow gun for DNA delivery to plant cells.
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Colletotrichum: tales of forcible entry, stealth, transient confinement and breakout.
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Biotrophic Development of Sporisorium reilianum f. sp. zeae in Vegetative Shoot Apex of Maize.
Phytopathology. 1999 Mar;89(3):247-53. doi: 10.1094/PHYTO.1999.89.3.247.
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Ultrastructure of the Infection of Sorghum bicolor by Colletotrichum sublineolum.
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Rice Pi-ta gene Confers Resistance to the Major Pathotypes of the Rice Blast Fungus in the United States.
Phytopathology. 2004 Mar;94(3):296-301. doi: 10.1094/PHYTO.2004.94.3.296.

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