Common processes in pathogenesis by fungal and oomycete plant pathogens, described with Gene Ontology terms
Open Access
- 19 February 2009
- journal article
- review article
- Published by Springer Nature in BMC Microbiology
- Vol. 9 (S1) , S7
- https://doi.org/10.1186/1471-2180-9-s1-s7
Abstract
Plant diseases caused by fungi and oomycetes result in significant economic losses every year. Although phylogenetically distant, the infection processes by these organisms share many common features. These include dispersal of an infectious particle, host adhesion, recognition, penetration, invasive growth, and lesion development. Previously, many of these common processes did not have corresponding Gene Ontology (GO) terms. For example, no GO terms existed to describe processes related to the appressorium, an important structure for infection by many fungi and oomycetes. In this mini-review, we identify common features of the pathogenic processes of fungi and oomycetes and create a pathogenesis model using 256 newly developed and 38 extant GO terms, with an emphasis on the appressorium and signal transduction. This set of standardized GO terms provides a solid base to further compare and contrast the molecular underpinnings of fungal and oomycete pathogenesis.Keywords
This publication has 39 references indexed in Scilit:
- Cellulose Synthesis inPhytophthora infestansIs Required for Normal Appressorium Formation and Successful Infection of PotatoPlant Cell, 2008
- Root Infection and Systemic Colonization of Maize byColletotrichum graminicolaApplied and Environmental Microbiology, 2008
- Insights from Sequencing Fungal and Oomycete Genomes: What Can We Learn about Plant Disease and the Evolution of Pathogenicity?Plant Cell, 2007
- Involvement of aMagnaporthe griseaSerine/Threonine Kinase Gene, MgATG1, in Appressorium Turgor and PathogenesisEukaryotic Cell, 2007
- A molecular phylogeny of the flagellated fungi (Chytridiomycota) and description of a new phylum (Blastocladiomycota)Mycologia, 2006
- Characterisation of the water expulsion vacuole inPhytophthora nicotianae zoosporesProtoplasma, 1999
- Why oomycetes have not stopped being fungiMycological Research, 1998
- Calmodulin-dependent protein phosphorylation during conidial germination and growth of Neurospora crassaMycological Research, 1997
- Ultrastructure of the Haustorial Apparatus in the Rust Fungus Kunkelia nitensBotanical Gazette, 1979
- Ultrastructural changes associated with the haustorial mother cell septum during haustorium formation inUromyces phaseoli var.vignaeProtoplasma, 1975