Detection and classification of phytoplasmas mainly rely on amplification of the 16S rRNA gene followed by RFLP analysis and/or sequencing, because these organisms lack complete phenotypic characterization. Other conserved genomic loci have been exploited as additional molecular markers for phytoplasma differentiation. Two loci, SSU12p and LSU36p, selected by whole-genome comparison of 12 phytoplasma strains, were used for primer design, and were successfully tested on DNA samples from plants infected by phytoplasmas belonging to ten 16S ribosomal groups. The phylogenetic trees inferred from SSU12p and LSU36p loci were highly congruent to the trees derived from 16S rRNA and tuf genes of the same phytoplasma strains. Virtual RFLP analysis of...
Classification of phytoplasmas into 16S ribosomal groups and subgroups and ‘Candidatus Phytoplasma’...
Following their discovery, phytoplasmas have been difficult to detect due to their low concentration...
Barcode regions are used to identify living organisms and the requirements are: polymorphisms to dis...
Detection and classification of phytoplasmas mainly rely on amplification of the 16S rRNA gene follo...
Detection and classification of phytoplasmas mainly rely on amplification of the 16S rRNA gene follo...
none3Following the application of molecular technologies the phytoplasma phylogeny was resolved and ...
Following the application of molecular technologies the phytoplasma phylogeny was resolved and led t...
Following the application of molecular technologies the phytoplasma phylogeny was resolved and led t...
The discovery in 1967, of a new group of plant pathogens related to bacteria led to the finding of p...
The discovery in 1967, of a new group of plant pathogens related to bacteria led to the finding of p...
The discovery in 1967, of a new group of plant pathogens related to bacteria led to the finding of p...
n the frame of the EU FP7 project QBOL the traditional phytoplasma classification based upon molecul...
n the frame of the EU FP7 project QBOL the traditional phytoplasma classification based upon molecul...
Classification of phytoplasmas into 16S ribosomal groups and subgroups and ‘Candidatus Phytoplasma’...
none5n the frame of the EU FP7 project QBOL the traditional phytoplasma classification based upon mo...
Classification of phytoplasmas into 16S ribosomal groups and subgroups and ‘Candidatus Phytoplasma’...
Following their discovery, phytoplasmas have been difficult to detect due to their low concentration...
Barcode regions are used to identify living organisms and the requirements are: polymorphisms to dis...
Detection and classification of phytoplasmas mainly rely on amplification of the 16S rRNA gene follo...
Detection and classification of phytoplasmas mainly rely on amplification of the 16S rRNA gene follo...
none3Following the application of molecular technologies the phytoplasma phylogeny was resolved and ...
Following the application of molecular technologies the phytoplasma phylogeny was resolved and led t...
Following the application of molecular technologies the phytoplasma phylogeny was resolved and led t...
The discovery in 1967, of a new group of plant pathogens related to bacteria led to the finding of p...
The discovery in 1967, of a new group of plant pathogens related to bacteria led to the finding of p...
The discovery in 1967, of a new group of plant pathogens related to bacteria led to the finding of p...
n the frame of the EU FP7 project QBOL the traditional phytoplasma classification based upon molecul...
n the frame of the EU FP7 project QBOL the traditional phytoplasma classification based upon molecul...
Classification of phytoplasmas into 16S ribosomal groups and subgroups and ‘Candidatus Phytoplasma’...
none5n the frame of the EU FP7 project QBOL the traditional phytoplasma classification based upon mo...
Classification of phytoplasmas into 16S ribosomal groups and subgroups and ‘Candidatus Phytoplasma’...
Following their discovery, phytoplasmas have been difficult to detect due to their low concentration...
Barcode regions are used to identify living organisms and the requirements are: polymorphisms to dis...