Literature DB >> 30764178

Re-evaluation of Phytophthora Species Isolated During 30 Years of Vegetation Health Surveys in Western Australia Using Molecular Techniques.

Treena I Burgess1, Janet L Webster2, Juanita A Ciampini2, Diane White1, Giles E StJ Hardy1, Michael J C Stukely2.   

Abstract

For 30 years, large-scale aerial photography has been used to map the extent of Phytophthora dieback disease in native forests in the southwest of Western Australia, with validation of the observations involving routine testing of soil and root samples for the presence of Phytophthora cinnamomi. In addition to P. cinnamomi, six morpho-species have been identified using this technique: P. citricola, P. megasperma, P. cryptogea, P. drechsleri, P. nicotianae, and P. boehmeriae. In recent years, many new Phytophthora species have been described worldwide, often with similar morphology to existing species; thus, as many of the isolates collected in Western Australia have been difficult to identify based on morphology, molecular identification of the morpho-species is required. Based on amplification of the internal transcribed spacer (ITS) region of the rDNA gene, sequence data of more than 230 isolates were compared with those of existing species and undescribed taxa. P. inundata, P. asparagi, P. taxon PgChlamydo, P. taxon personii, and P. taxon niederhauserii were identified based on sequence data. Phylogenetic analysis revealed that nine potentially new and undescribed taxa can be distinguished. Several of the new taxa are morphologically indistinguishable from species such as P. citricola, P. drechsleri, and P. megasperma. In some cases, the new taxa are closely related to species with similar morphology (e.g., P.sp.4 and P. citricola). However, the DNA sequences of other new taxa such as P.sp.3 and P.sp.9 show that they are not closely related to morphologically similar species P. drechsleri and P. megasperma, respectively. Most of the new taxa have been associated with dying Banksia spp., while P.sp.2 and P.sp.4 have also been isolated from dying Eucalyptus marginata (jarrah). Some taxa (P.sp.3, 6, and 7) appear to have limited distribution, while others like P.sp.4 are widespread.

Entities:  

Year:  2009        PMID: 30764178     DOI: 10.1094/PDIS-93-3-0215

Source DB:  PubMed          Journal:  Plant Dis        ISSN: 0191-2917            Impact factor:   4.438


  5 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.  Evolutionary trait-based approaches for predicting future global impacts of plant pathogens in the genus Phytophthora.

Authors:  Louise J Barwell; Ana Perez-Sierra; Beatrice Henricot; Anna Harris; Treena I Burgess; Giles Hardy; Peter Scott; Nari Williams; David E L Cooke; Sarah Green; Daniel S Chapman; Bethan V Purse
Journal:  J Appl Ecol       Date:  2020-12-23       Impact factor: 6.528

3.  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

4.  Association of Phytophthora with Declining Vegetation in an Urban Forest Environment.

Authors:  Mohammed Y Khdiar; Paul A Barber; Giles E StJ Hardy; Chris Shaw; Emma J Steel; Cameron McMains; Treena I Burgess
Journal:  Microorganisms       Date:  2020-06-29

5.  Diversity of Phytophthora Species from Declining Mediterranean Maquis Vegetation, including Two New Species, Phytophthora crassamura and P. ornamentata sp. nov.

Authors:  Bruno Scanu; Benedetto T Linaldeddu; Antonio Deidda; Thomas Jung
Journal:  PLoS One       Date:  2015-12-09       Impact factor: 3.240

  5 in total

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