TY - JOUR
T1 - Biochemical characterization and identification of ice-nucleation-active (INA) willow pathogens by means of BIOLOG (R) MicroPlate, INA gene primers and PCR-based 16S rRNA-gene analyses
AU - Nejad, Pajand
AU - Ramstedt, Mauritz
AU - Granhall, Ulf
AU - Roos, Stefan
AU - McIvor, I
PY - 2006
Y1 - 2006
N2 - Detection and identification of ice-nucleation active (INA) bacteria, was carried out in several independent investigations from diseased willow plants in different regions in Sweden and Estonia. Many of these bacteria, alone or together, cause serious bacterial disease problems in willow (Salix spp.) plants in combination with frost leading to dieback in plantations for energy forestry purposes. Methods used for identification were BIOLOG (R) MicroPlates, biochemical tests including growth in different media and pathogenic tests, designing and using selective INA primers, and 16S rRNA gene analyses. The taxonomic tools, especially phylogenetic analysis derived from 16S rRNA gene sequences, clearly distinguished many bacteria. The identified strains from willows (20 clones) belonged to at least eight different genera and 12 species showing variable levels of aggressiveness and ice-nucleation activity under laboratory and greenhouse conditions. Diseased willows were found associated with the presence of Agrobacterium tumefaciens, Bacillus spp., Clavibacter spp., Erwinia rhapontici, Frigoribacterium. faeni, Pseudomonas brenneri, P. fluorescens, P. frederiksbergensis, P. graminis, P. syringae, P. veronii, Sphingobacterium/ Pedobacter, Sphingomonas/non-fluorescent P. fluorescens (different biotypes), Xanthomonas campestris and related species.
AB - Detection and identification of ice-nucleation active (INA) bacteria, was carried out in several independent investigations from diseased willow plants in different regions in Sweden and Estonia. Many of these bacteria, alone or together, cause serious bacterial disease problems in willow (Salix spp.) plants in combination with frost leading to dieback in plantations for energy forestry purposes. Methods used for identification were BIOLOG (R) MicroPlates, biochemical tests including growth in different media and pathogenic tests, designing and using selective INA primers, and 16S rRNA gene analyses. The taxonomic tools, especially phylogenetic analysis derived from 16S rRNA gene sequences, clearly distinguished many bacteria. The identified strains from willows (20 clones) belonged to at least eight different genera and 12 species showing variable levels of aggressiveness and ice-nucleation activity under laboratory and greenhouse conditions. Diseased willows were found associated with the presence of Agrobacterium tumefaciens, Bacillus spp., Clavibacter spp., Erwinia rhapontici, Frigoribacterium. faeni, Pseudomonas brenneri, P. fluorescens, P. frederiksbergensis, P. graminis, P. syringae, P. veronii, Sphingobacterium/ Pedobacter, Sphingomonas/non-fluorescent P. fluorescens (different biotypes), Xanthomonas campestris and related species.
KW - BIOLOG (R) MicroPlate
KW - frost
KW - INA bacteria
KW - Salix
KW - BIOLOG (R) MicroPlate
KW - frost
KW - INA bacteria
KW - Salix
UR - https://res.slu.se/id/publ/14250
U2 - 10.1007/BF03356165
DO - 10.1007/BF03356165
M3 - Journal article
SN - 1861-3829
VL - 113
SP - 97
EP - 106
JO - Journal of Plant Diseases and Protection
JF - Journal of Plant Diseases and Protection
IS - 3
ER -