The barcode probe is a convenient and efficient tool for molecular cytogenetics. Tripidium arundinaceum, as a polyploid wild allied genus of Saccharum, is a useful genetic resource that confers biotic and abiotic stress resistance for sugarcane breeding. Unfortunately, the basic cytogenetic information is still unclear due to the complex genome. We constructed the Cot-20 library for screening moderately and highly repetitive sequences from T. arundinaceum, and the chromosomal distribution of these repetitive sequences was explored. We used the barcode of repetitive sequence probes to distinguish the ten chromosome types of T. arundinaceum by fluorescence in situ hybridization (FISH) with Ea-0907, Ea-0098, and 45S rDNA. Furthermore, the dist...
The interspecific sugarcane hybrid “KPS 01-01-25” is one of Thailand’s most successful cultivars, bu...
The fluorescent in situ hybridization (FISH) technique has been applied to somatic chromosomes in th...
Conventional cytological method is limited for polyploidy plant genome study, especially sugar cane ...
Chromosome-specific identification is a powerful technique in the study of genome structure and evol...
Chromosome-specific identification is a powerful technique in the study of genome structure and evol...
Chromosome-specific identification is a powerful technique in the study of genome structure and evol...
Holocentric karyotypes are assumed to rapidly evolve through chromosome fusions and fissions due to ...
Chromosome-specific identification is a powerful technique in the study of genome structure and evol...
Holocentric karyotypes are assumed to rapidly evolve through chromosome fusions and fissions due to ...
Holocentric karyotypes are assumed to rapidly evolve through chromosome fusions and fissions due to ...
The progress that has been achieved in understanding sugarcane (Saccharum spp.) genome structure ove...
Repetitive DNAs have been extensively applied as physical chromosome markers on comparative studies,...
The genus Saccharum is composed of species with high polyploidy and highly varied chromosome numbers...
<p>FISH is a useful method to identify individual chromosomes in a karyotype and to discover their ...
Setaria Beauvois, 1812 is a genus of economically important forage species, including Setaria italic...
The interspecific sugarcane hybrid “KPS 01-01-25” is one of Thailand’s most successful cultivars, bu...
The fluorescent in situ hybridization (FISH) technique has been applied to somatic chromosomes in th...
Conventional cytological method is limited for polyploidy plant genome study, especially sugar cane ...
Chromosome-specific identification is a powerful technique in the study of genome structure and evol...
Chromosome-specific identification is a powerful technique in the study of genome structure and evol...
Chromosome-specific identification is a powerful technique in the study of genome structure and evol...
Holocentric karyotypes are assumed to rapidly evolve through chromosome fusions and fissions due to ...
Chromosome-specific identification is a powerful technique in the study of genome structure and evol...
Holocentric karyotypes are assumed to rapidly evolve through chromosome fusions and fissions due to ...
Holocentric karyotypes are assumed to rapidly evolve through chromosome fusions and fissions due to ...
The progress that has been achieved in understanding sugarcane (Saccharum spp.) genome structure ove...
Repetitive DNAs have been extensively applied as physical chromosome markers on comparative studies,...
The genus Saccharum is composed of species with high polyploidy and highly varied chromosome numbers...
<p>FISH is a useful method to identify individual chromosomes in a karyotype and to discover their ...
Setaria Beauvois, 1812 is a genus of economically important forage species, including Setaria italic...
The interspecific sugarcane hybrid “KPS 01-01-25” is one of Thailand’s most successful cultivars, bu...
The fluorescent in situ hybridization (FISH) technique has been applied to somatic chromosomes in th...
Conventional cytological method is limited for polyploidy plant genome study, especially sugar cane ...