A method using consensus PCR followed by oligonucleotide microarray hybridization was developed for identification of phytoplasma 16Sr ribosomal groups. The array consisted of 21\u2013 to 33-nt-long oligonucleotides which were designed to hybridize to individual 16Sr groups. Two oligonucleotides were designed to detect all phytoplasma groups. The array could efficiently identify samples from 16SrI, 16SrII, 16SrIII, 16SrV, 16SrVI, 16SrVII, 16SrIX, 16SrX and 16SrXII ribosomal groups. This microarray-based test represents a rapid method for detection of phytoplasmas in unknown samples and for identification of most 16Sr groups
A protocol based on Co-operational PCR has been successfully applied to the detection of phytoplasma...
The impact of phytoplasmas in agriculture has become serious, and early diagnosis is the best option...
Barcode regions are used to identify living organisms and the requirements are: polymorphisms to dis...
A method using consensus PCR followed by oligonucleotide microarray hybridization was developed for ...
Detection and identification of phytoplasmas is a laborious process often involving nested PCR follo...
Current phytoplasma detection and identification method is primarily based on nested PCR followed by...
Following their discovery, phytoplasmas have been difficult to detect due to their low concentration...
Phytoplasma detection and identification is primarily based on PCR followed by restriction fragment ...
The aim of this thesis was to optimize the method of detection of phytoplasmas using DNA-microarray....
Phytoplasmas infect a high number of plant species. Based on the 16S ribosomal gene sequence, over 2...
Phytoplasma identification has proved difficult due to the pathogen’s lack of morphological traits a...
Phytoplasmas are bacteria lacking cell wall that are located in the phloem of plants and in the hem...
Detection and classification of phytoplasmas mainly rely on amplification of the 16S rRNA gene follo...
A protocol based on Co-operational PCR has been successfully applied to the detection of phytoplasma...
The impact of phytoplasmas in agriculture has become serious, and early diagnosis is the best option...
Barcode regions are used to identify living organisms and the requirements are: polymorphisms to dis...
A method using consensus PCR followed by oligonucleotide microarray hybridization was developed for ...
Detection and identification of phytoplasmas is a laborious process often involving nested PCR follo...
Current phytoplasma detection and identification method is primarily based on nested PCR followed by...
Following their discovery, phytoplasmas have been difficult to detect due to their low concentration...
Phytoplasma detection and identification is primarily based on PCR followed by restriction fragment ...
The aim of this thesis was to optimize the method of detection of phytoplasmas using DNA-microarray....
Phytoplasmas infect a high number of plant species. Based on the 16S ribosomal gene sequence, over 2...
Phytoplasma identification has proved difficult due to the pathogen’s lack of morphological traits a...
Phytoplasmas are bacteria lacking cell wall that are located in the phloem of plants and in the hem...
Detection and classification of phytoplasmas mainly rely on amplification of the 16S rRNA gene follo...
A protocol based on Co-operational PCR has been successfully applied to the detection of phytoplasma...
The impact of phytoplasmas in agriculture has become serious, and early diagnosis is the best option...
Barcode regions are used to identify living organisms and the requirements are: polymorphisms to dis...