| Literature DB >> 26118724 |
Shigeyuki Tanaka1, Armin Djamei1, Libera Lo Presti1, Kerstin Schipper1, Sarah Winterberg1, Simone Amati2, Dirk Becker2, Heike Büchner3, Jochen Kumlehn3, Stefanie Reissmann1, Regine Kahmann4.
Abstract
The fungus Ustilago maydis is a pathogen that establishes a biotrophic interaction with Zea mays. The interaction with the plant host is largely governed by more than 300 novel, secreted protein effectors, of which only four have been functionally characterized. Prerequisite to examine effector function is to know where effectors reside after secretion. Effectors can remain in the extracellular space, i.e. the plant apoplast (apoplastic effectors), or can cross the plant plasma membrane and exert their function inside the host cell (cytoplasmic effectors). The U. maydis effectors lack conserved motifs in their primary sequences that could allow a classification of the effectome into apoplastic/cytoplasmic effectors. This represents a significant obstacle in functional effector characterization. Here we describe our attempts to establish a system for effector classification into apoplastic and cytoplasmic members, using U. maydis for effector delivery.Entities:
Keywords: Apoplastic effector; Biotroph; Cytoplasmic effector; Plant pathogen; Translocation assay; Ustilago maydis
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Year: 2015 PMID: 26118724 DOI: 10.1016/j.ejcb.2015.06.007
Source DB: PubMed Journal: Eur J Cell Biol ISSN: 0171-9335 Impact factor: 4.492