Bulked segregant analysis was used to determine randomly amplified polymorphic DNA (RAPD) mark-ers in a specific interval in the middle of chromosome 6 of rice for tagging the photoperiod sensitivity gene. Two pools of F2 individuals (japonica cv. Nipponbare and indica cv. Kasalath) were constructed accord-ing to the genotypes of three restriction fragment length polymorphism (RFLP) markers located at both ends and the middle of the targeted interval. Then another pair of pools were constructed based on the "graphical genotype, " which was made with our high density linkage map. RAPD analysis was performed using these DNA pools as templates, and polymorphic fragments were detected and mapped. Using 80 primers, either singly or pai...
Rice blast, caused byPyricularia grisea, is a major production constraint in many parts of the world...
Varietal identification has attained prime importance at a global level particularly in the context ...
srs-1, a new floral organ identity gene in rice, was mapped using RAPD and RFLP markers. Firstly, th...
DNA markers can detect DNA sequence variations in the genome, and they are useful for genetic studie...
Molecular markers are useful tool for assessing genetic variations and resolving genotype identity. ...
A research was conducted to identify the genetics of upland rice cultivars using random amplified po...
The aim of this study was to evaluate the genetic diversity of Iranian improved rice varieties. Sixt...
The molecular marker is a useful tool for assessing genetic variations and resolving cultivar identi...
A mapping population comprising 220 F2 individuals was developed by raising the selfed F1 seed of a ...
In India, molecular mapping and tagging of agronomically important genes using RFLP and RAPD markers...
The molecular marker is a useful tool for assessing genetic variations and resolving cultivar identi...
The molecular marker is a useful tool for assessing genetic variations and resolving cultivar identi...
Two randomly amplified polymorphic DNA (RAPD) markers, OPF6<SUB>2700</SUB> and OPH18<SUB>2400</SUB>,...
224-229Random Amplified Polymorphic DNA (RAPD) assay was performed to estimate genetic polymorphism ...
The conditions for efficient single-strand conformation polymorphism (SSCP) detection were examined ...
Rice blast, caused byPyricularia grisea, is a major production constraint in many parts of the world...
Varietal identification has attained prime importance at a global level particularly in the context ...
srs-1, a new floral organ identity gene in rice, was mapped using RAPD and RFLP markers. Firstly, th...
DNA markers can detect DNA sequence variations in the genome, and they are useful for genetic studie...
Molecular markers are useful tool for assessing genetic variations and resolving genotype identity. ...
A research was conducted to identify the genetics of upland rice cultivars using random amplified po...
The aim of this study was to evaluate the genetic diversity of Iranian improved rice varieties. Sixt...
The molecular marker is a useful tool for assessing genetic variations and resolving cultivar identi...
A mapping population comprising 220 F2 individuals was developed by raising the selfed F1 seed of a ...
In India, molecular mapping and tagging of agronomically important genes using RFLP and RAPD markers...
The molecular marker is a useful tool for assessing genetic variations and resolving cultivar identi...
The molecular marker is a useful tool for assessing genetic variations and resolving cultivar identi...
Two randomly amplified polymorphic DNA (RAPD) markers, OPF6<SUB>2700</SUB> and OPH18<SUB>2400</SUB>,...
224-229Random Amplified Polymorphic DNA (RAPD) assay was performed to estimate genetic polymorphism ...
The conditions for efficient single-strand conformation polymorphism (SSCP) detection were examined ...
Rice blast, caused byPyricularia grisea, is a major production constraint in many parts of the world...
Varietal identification has attained prime importance at a global level particularly in the context ...
srs-1, a new floral organ identity gene in rice, was mapped using RAPD and RFLP markers. Firstly, th...