Literature DB >> 12967204

Phytophthora pseudosyringae sp. nov., a new species causing root and collar rot of deciduous tree species in Europe.

Thomas Jung1, Jan Nechwatal, David E L Cooke, Günther Hartmann, Markus Blaschke, Wolfgang F Osswald, James M Duncan, Claude Delatour.   

Abstract

In several studies of oak decline in Europe, a semi-papillate homothallic Phytophthora taxon was consistently isolated, together with other Phytophthora species, from rhizosphere soil samples. It was also found associated with necrotic fine roots and stem necroses of Fagus sylvatica and Alnus glutinosa. Due to morphological and physiological similarities, the semi-papillate isolates were previously identified as P. syringae by various authors. The morphology, physiology and pathogenicity against fine roots of Quercus robur, Q. petraea and F. sylvatica, bark of A. glutinosa, leaves of Ilex aquifolium and apple fruits of this Phytophthora species are described and compared with those of related and similar Phytophthora species, namely P. ilicis, P. psychrophila, P. quercina, P. citricola and P. syringae. The phylogenetic placement on the basis of ITS and mtDNA sequence data was also examined. Isolates of this taxon produce colonies with stellate to rosaceous growth patterns and limited aerial mycelium on various agar media. Antheridia are predominantly paragynous. In water culture catenulate hyphal swellings and semi-papillate caducous sporangia, that are usually limoniform, ellipsoid or ovoid, are formed abundandly, mostly in lax or dense sympodia. This taxon is a moderately slow growing, low temperature species with optimum and maximum temperatures around 20 and 25 degrees C, respectively. Tested isolates are moderately aggressive to fine roots of oaks and beech, highly aggressive to holly leaves and apple fruits, and slightly pathogenic to alder bark. Thirteen tested isolates had an identical and distinct ITS sequence which was more similar to that of P. ilicis and P. psychrophila than any other known taxa. On the basis of their unique combination of morphological characters, colony growth patterns, cardinal temperatures for growth, growth rates, pathogenicity to oaks, beech, alder, apple and holly, their host range, and ITS and mtDNA sequences the semi-papillate caducous Phytophthora isolates from oaks, beech and alder are clearly separated from related and similar Phytophthora spp., and described as a new species, P. pseudosyringae sp. nov.

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Year:  2003        PMID: 12967204     DOI: 10.1017/s0953756203008074

Source DB:  PubMed          Journal:  Mycol Res        ISSN: 0953-7562


  17 in total

Review 1.  Canker and decline diseases caused by soil- and airborne Phytophthora species in forests and woodlands.

Authors:  T Jung; A Pérez-Sierra; A Durán; M Horta Jung; Y Balci; B Scanu
Journal:  Persoonia       Date:  2018-04-30       Impact factor: 11.051

2.  Genera of phytopathogenic fungi: GOPHY 4.

Authors:  Q Chen; M Bakhshi; Y Balci; K D Broders; R Cheewangkoon; S F Chen; X L Fan; D Gramaje; F Halleen; M Horta Jung; N Jiang; T Jung; T Májek; S Marincowitz; I Milenković; L Mostert; C Nakashima; I Nurul Faziha; M Pan; M Raza; B Scanu; C F J Spies; L Suhaizan; H Suzuki; C M Tian; M Tomšovský; J R Úrbez-Torres; W Wang; B D Wingfield; M J Wingfield; Q Yang; X Yang; R Zare; P Zhao; J Z Groenewald; L Cai; P W Crous
Journal:  Stud Mycol       Date:  2022-06-02       Impact factor: 25.731

3.  Phytophthora: an ancient, historic, biologically and structurally cohesive and evolutionarily successful generic concept in need of preservation.

Authors:  Clive Brasier; Bruno Scanu; David Cooke; Thomas Jung
Journal:  IMA Fungus       Date:  2022-06-27       Impact factor: 8.044

4.  Ectomycorrhizal community structure in a healthy and a Phytophthora-infected chestnut (Castanea sativa Mill.) stand in central Italy.

Authors:  Jan Maarten Blom; Andrea Vannini; Anna Maria Vettraino; Michael D Hale; Douglas L Godbold
Journal:  Mycorrhiza       Date:  2009-06-11       Impact factor: 3.387

5.  Phytophthora multivora sp. nov., a new species recovered from declining Eucalyptus, Banksia, Agonis and other plant species in Western Australia.

Authors:  P M Scott; T I Burgess; P A Barber; B L Shearer; M J C Stukely; G E St J Hardy; T Jung
Journal:  Persoonia       Date:  2009-02-02       Impact factor: 11.051

6.  Re-evaluation of Phytophthora citricola isolates from multiple woody hosts in Europe and North America reveals a new species, Phytophthora plurivora sp. nov.

Authors:  T Jung; T I Burgess
Journal:  Persoonia       Date:  2009-04-14       Impact factor: 11.051

Review 7.  Sudden oak death: interactions of the exotic oomycete Phytophthora ramorum with naïve North American hosts.

Authors:  Matteo Garbelotto; Katherine J Hayden
Journal:  Eukaryot Cell       Date:  2012-09-21

8.  Haustorium formation and a distinct biotrophic transcriptome characterize infection of Nicotiana benthamiana by the tree pathogen Phytophthora kernoviae.

Authors:  Shumei Wang; Ramesh R Vetukuri; Sandeep K Kushwaha; Pete E Hedley; Jenny Morris; David J Studholme; Lydia R J Welsh; Petra C Boevink; Paul R J Birch; Stephen C Whisson
Journal:  Mol Plant Pathol       Date:  2021-05-20       Impact factor: 5.663

9.  Multiple new Phytophthora species from ITS Clade 6 associated with natural ecosystems in Australia: evolutionary and ecological implications.

Authors:  T Jung; M J C Stukely; G E St J Hardy; D White; T Paap; W A Dunstan; T I Burgess
Journal:  Persoonia       Date:  2011-01-20       Impact factor: 11.051

10.  An expanded phylogeny for the genus Phytophthora.

Authors:  Xiao Yang; Brett M Tyler; Chuanxue Hong
Journal:  IMA Fungus       Date:  2017-11-21       Impact factor: 3.515

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