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Updated: Dec 23, 2025

Purification and Quality Control of Recombinant Septin Complexes for Cell-Free Reconstitution
Published on: June 23, 2022
Dynamic assembly of a higher-order septin structure during appressorium morphogenesis by the rice blast fungus
Nawaraj Dulal1, Audra Rogers1, Yong Wang2
1Department of Entomology and Plant Pathology, Cell and Molecular Biology Program, University of Arkansas Systems Division of Agriculture, Fayetteville, AR 72701, USA.
Abstract:
The rice blast fungus Magnaporthe oryzae differentiates a specialized infection structure called an appressorium, which is used to break into plant cells by directed application of enormous turgor force. Appressorium-mediated plant infection requires timely assembly of a higher-order septin ring structure at the base of the appressorium, which is needed to spatially orchestrate appressorium repolarization. Here we use quantitative 4D widefield fluorescence imaging to gain new insight into the spatiotemporal dynamics of septin ring formation, and septin-mediated actin re-organization, during appressorium morphogenesis by M. oryzae. We anticipate that the new knowledge will provide a quantitative framework for dissecting the molecular mechanisms of higher-order septin ring assembly in this devastating plant pathogenic fungus.
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