Literature DB >> 25303335

The Fungal Cell-Wall Integrity MAPK Cascade Is Crucial for Hyphal Network Formation and Maintenance of Restrictive Growth of Epichloë festucae in Symbiosis With Lolium perenne.

Yvonne Becker, Carla J Eaton, Emma Brasell, Kimberley J May, Matthias Becker, Berit Hassing, Gemma M Cartwright, Leonie Reinhold, Barry Scott.   

Abstract

Epichloë festucae is a mutualistic symbiont that systemically colonizes the intercellular spaces of Lolium perenne leaves to form a highly structured and interconnected hyphal network. In an Agrobacterium tumefaciens T-DNA forward genetic screen, we identified a mutant TM1066 that had a severe host interaction phenotype, causing stunting and premature senescence of the host. Molecular analysis revealed that the mutation responsible for this phenotype was in the cell-wall integrity (CWI) mitogen-activated protein kinase kinase (MAPKK), mkkA. Mutants generated by targeted deletion of the mkkA or the downstream mpkA kinase recapitulated the phenotypes observed for TM1066. Both mutants were defective in hyphal cell–cell fusion, formed intrahyphal hyphae, had enhanced conidiation, and showed microcyclic conidiation. Transmission electron microscopy and confocal microscopy analysis of leaf tissue showed that mutant hyphae were more abundant than the wild type in the intercellular spaces and colonized the vascular bundles. Hyphal branches failed to fuse but, instead, grew past one another to form bundles of convoluted hyphae. Mutant hyphae showed increased fluorescence with AF488-WGA, indicative of increased accessibility of chitin, a hypothesis supported by changes in the cell-wall ultrastructure. These results show that the CWI MAPK pathway is a key signaling pathway for controlling the mutualistic symbiotic interaction between E. festucae and L. perenne.

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Year:  2015        PMID: 25303335     DOI: 10.1094/MPMI-06-14-0183-R

Source DB:  PubMed          Journal:  Mol Plant Microbe Interact        ISSN: 0894-0282            Impact factor:   4.171


  15 in total

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2.  Disruption of calcineurin catalytic subunit (cnaA) in Epichloë festucae induces symbiotic defects and intrahyphal hyphae formation.

Authors:  Milena Mitic; Daniel Berry; Emma Brasell; Kimberly Green; Carolyn A Young; Sanjay Saikia; Jasna Rakonjac; Barry Scott
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3.  Vegetative hyphal fusion and subsequent nuclear behavior in Epichloë grass endophytes.

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Review 4.  The trans-kingdom identification of negative regulators of pathogen hypervirulence.

Authors:  Neil A Brown; Martin Urban; Kim E Hammond-Kosack
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5.  An Epichloë festucae homologue of MOB3, a component of the STRIPAK complex, is required for the establishment of a mutualistic symbiotic interaction with Lolium perenne.

Authors:  Kimberly A Green; Yvonne Becker; Helen L Fitzsimons; Barry Scott
Journal:  Mol Plant Pathol       Date:  2016-08-14       Impact factor: 5.663

6.  Mutation of the Slt2 ortholog from Cryphonectria parasitica results in abnormal cell wall integrity and sectorization with impaired pathogenicity.

Authors:  Kum-Kang So; Yo-Han Ko; Jeesun Chun; Jung-Mi Kim; Dae-Hyuk Kim
Journal:  Sci Rep       Date:  2017-08-22       Impact factor: 4.379

7.  A homologue of the fungal tetraspanin Pls1 is required for Epichloë festucae expressorium formation and establishment of a mutualistic interaction with Lolium perenne.

Authors:  Kimberly A Green; Carla J Eaton; Matthew S Savoian; Barry Scott
Journal:  Mol Plant Pathol       Date:  2019-04-22       Impact factor: 5.663

8.  The endophytic symbiont Epichloë festucae establishes an epiphyllous net on the surface of Lolium perenne leaves by development of an expressorium, an appressorium-like leaf exit structure.

Authors:  Matthias Becker; Yvonne Becker; Kimberly Green; Barry Scott
Journal:  New Phytol       Date:  2016-03-17       Impact factor: 10.151

9.  Seed Transmission of Epichloë Endophytes in Lolium perenne Is Heavily Influenced by Host Genetics.

Authors:  Milan Gagic; Marty J Faville; Wei Zhang; Natasha T Forester; M Philip Rolston; Richard D Johnson; Siva Ganesh; John P Koolaard; H Sydney Easton; Debbie Hudson; Linda J Johnson; Christina D Moon; Christine R Voisey
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10.  PaPro1 and IDC4, Two Genes Controlling Stationary Phase, Sexual Development and Cell Degeneration in Podospora anserina.

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Journal:  J Fungi (Basel)       Date:  2018-07-11
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