Literature DB >> 21722292

Secrets of the subterranean pathosystem of Armillaria.

Kendra Baumgartner1, Martin P A Coetzee, Dirk Hoffmeister.   

Abstract

UNLABELLED: Armillaria root disease affects fruit and nut crops, timber trees and ornamentals in boreal, temperate and tropical regions of the world. The causal pathogens are members of the genus Armillaria (Basidiomycota, Physalacriaceae). This review summarizes the state of knowledge and highlights recent advances in Armillaria research. TAXONOMY: Armillaria includes more than 40 morphological species. However, the identification and delineation of species on the basis of morphological characters are problematic, resulting in many species being undetected. Implementation of the biological species' concept and DNA sequence comparisons in the contemporary taxonomy of Armillaria have led to the discovery of a number of new species that are not linked to described morphological species. HOST RANGE: Armillaria exhibits a range of symbioses with both plants and fungi. As plant pathogens, Armillaria species have broad host ranges, infecting mostly woody species. Armillaria can also colonize orchids Galeola and Gastrodia but, in this case, the fungus is the host and the plant is the parasite. Similar to its contrasting relationships with plants, Armillaria acts as either host or parasite in its interactions with other fungi. Disease control: Recent research on post-infection controls has revealed promising alternatives to the former pre-plant eradication attempts with soil fumigants, which are now being regulated more heavily or banned outright because of their negative effects on the environment. New study tools for genetic manipulation of the pathogen and characterization of the molecular basis of the host response will greatly advance the development of resistant rootstocks in a new stage of research. The depth of the research, regardless of whether traditional or genomic approaches are used, will depend on a clear understanding of where the different propagules of Armillaria attack a root system, which of the pathogen's diverse biolymer-degrading enzymes and secondary metabolites facilitate infection, and how the course of infection differs between resistant and susceptible hosts. Molecular Plant Pathology
© 2011 BSPP and Blackwell Publishing Ltd. No Claim to Original US Government Works.

Entities:  

Mesh:

Year:  2011        PMID: 21722292      PMCID: PMC6640247          DOI: 10.1111/j.1364-3703.2010.00693.x

Source DB:  PubMed          Journal:  Mol Plant Pathol        ISSN: 1364-3703            Impact factor:   5.663


  23 in total

1.  A Fivefold Parallelized Biosynthetic Process Secures Chlorination of Armillaria mellea (Honey Mushroom) Toxins.

Authors:  Jonas Wick; Daniel Heine; Gerald Lackner; Mathias Misiek; James Tauber; Hans Jagusch; Christian Hertweck; Dirk Hoffmeister
Journal:  Appl Environ Microbiol       Date:  2015-12-11       Impact factor: 4.792

2.  Chromosomal assembly and analyses of genome-wide recombination rates in the forest pathogenic fungus Armillaria ostoyae.

Authors:  Renate Heinzelmann; Daniel Rigling; György Sipos; Martin Münsterkötter; Daniel Croll
Journal:  Heredity (Edinb)       Date:  2020-03-13       Impact factor: 3.821

3.  Comparative assessment of SSR and SNP markers for inferring the population genetic structure of the common fungus Armillaria cepistipes.

Authors:  T Tsykun; C Rellstab; C Dutech; G Sipos; S Prospero
Journal:  Heredity (Edinb)       Date:  2017-08-16       Impact factor: 3.821

4.  Draft genomic sequence of Armillaria gallica 012m: insights into its symbiotic relationship with Gastrodia elata.

Authors:  Mengtao Zhan; Menghua Tian; Weiguang Wang; Ganpeng Li; Xiaokai Lu; Guolei Cai; Haiying Yang; Gang Du; Lishuxin Huang
Journal:  Braz J Microbiol       Date:  2020-06-22       Impact factor: 2.476

5.  Genomic Comparisons of Two Armillaria Species with Different Ecological Behaviors and Their Associated Soil Microbial Communities.

Authors:  Jorge R Ibarra Caballero; Bradley M Lalande; John W Hanna; Ned B Klopfenstein; Mee-Sook Kim; Jane E Stewart
Journal:  Microb Ecol       Date:  2022-03-21       Impact factor: 4.552

6.  Armillaria root rot fungi host single-stranded RNA viruses.

Authors:  Riikka Linnakoski; Suvi Sutela; Martin P A Coetzee; Tuan A Duong; Igor N Pavlov; Yulia A Litovka; Jarkko Hantula; Brenda D Wingfield; Eeva J Vainio
Journal:  Sci Rep       Date:  2021-04-01       Impact factor: 4.379

7.  Genomic and proteomic dissection of the ubiquitous plant pathogen, Armillaria mellea: toward a new infection model system.

Authors:  Cassandra Collins; Thomas M Keane; Daniel J Turner; Grainne O'Keeffe; David A Fitzpatrick; Sean Doyle
Journal:  J Proteome Res       Date:  2013-05-28       Impact factor: 4.466

8.  A native promoter and inclusion of an intron is necessary for efficient expression of GFP or mRFP in Armillaria mellea.

Authors:  Kathryn L Ford; Kendra Baumgartner; Béatrice Henricot; Andy M Bailey; Gary D Foster
Journal:  Sci Rep       Date:  2016-07-07       Impact factor: 4.379

9.  IMA Genome-F 6: Draft genome sequences of Armillaria fuscipes, Ceratocystiopsis minuta, Ceratocystis adiposa, Endoconidiophora laricicola, E. polonica and Penicillium freii DAOMC 242723.

Authors:  Brenda D Wingfield; Jon M Ambler; Martin P A Coetzee; Z Wilhelm de Beer; Tuan A Duong; Fourie Joubert; Almuth Hammerbacher; Alistair R McTaggart; Kershney Naidoo; Hai D T Nguyen; Ekaterina Ponomareva; Quentin S Santana; Keith A Seifert; Emma T Steenkamp; Conrad Trollip; Magriet A van der Nest; Cobus M Visagie; P Markus Wilken; Michael J Wingfield; Neriman Yilmaz
Journal:  IMA Fungus       Date:  2016-06-21       Impact factor: 3.515

10.  Transcriptomic responses of a simplified soil microcosm to a plant pathogen and its biocontrol agent reveal a complex reaction to harsh habitat.

Authors:  Michele Perazzolli; Noemí Herrero; Lieven Sterck; Luisa Lenzi; Alberto Pellegrini; Gerardo Puopolo; Yves Van de Peer; Ilaria Pertot
Journal:  BMC Genomics       Date:  2016-10-27       Impact factor: 3.969

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