Endocytosis in the plant-pathogenic fungus Ustilago maydis
- 20 October 2005
- journal article
- research article
- Published by Springer Nature in Protoplasma
- Vol. 226 (1-2), 75-80
- https://doi.org/10.1007/s00709-005-0109-3
Abstract
Filamentous fungi are an important group of tip-growing organisms, which include numerous plant pathogens such as Magnaporthe grisea and Ustilago maydis. Despite their ecological and economical relevance, we are just beginning to unravel the importance of endocytosis in filamentous fungi. Most evidence for endocytosis in filamentous fungi is based on the use of endocytic tracer dyes that are taken up into the cell and delivered to the vacuole. Moreover, genomewide screening for candidate genes in Neurospora crassa and U. maydis confirmed the presence of most components of the endocytic machinery, indicating that endocytosis participates in filamentous growth. Indeed, it was shown that in U. maydis early endosomes cluster at sites of growth, where they support morphogenesis and polar growth, most likely via endosome-based membrane recycling. In humans, such recycling processes to the plasma membrane involve small GTPases such as Rab4. A homologue of this protein is encoded in the genome of U. maydis but is absent from the yeast Saccharomyces cerevisiae, suggesting that Rab4-mediated recycling is important for filamentous growth. Furthermore, human Rab4 regulates traffic of early endosomes along microtubules, and a similar microtubule-based transport is described for U. maydis. These observations suggest that Rab4-like GTPases might regulate endosome- and microtubule-based recycling during tip growth of filamentous fungi.Keywords
This publication has 38 references indexed in Scilit:
- Coupling actin dynamics to the endocytic process in Saccharomyces cerevisiaeProtoplasma, 2005
- A Pathway for Association of Receptors, Adaptors, and Actin during Endocytic InternalizationCell, 2003
- Regulation of early endocytic vesicle motility and fission in a reconstituted systemJournal of Cell Science, 2003
- Divalent Rab effectors regulate the sub-compartmental organization and sorting of early endosomesNature Cell Biology, 2002
- Polarized Cell Growth in Higher PlantsAnnual Review of Cell and Developmental Biology, 2001
- PROTEIN AND LIPID REQUIREMENTS FOR ENDOCYTOSISAnnual Review of Genetics, 2000
- Evidence That Spitzenkörper Behavior Determines the Shape of a Fungal Hypha: A Test of the Hyphoid ModelExperimental Mycology, 1995
- The FungiMycologia, 1995
- New insights into the interaction of cytoplasmic dynein with the actin-related protein, Arp1.The Journal of cell biology, 1994
- Der Spitzenkörper von Polystictus versicolor (L.)Planta, 1957