Fusarium wilt (FW) and sterility mosaic diseases (SMD) are key biotic constraints to pigeonpea production. Occurrence of these two diseases in congenial conditions is reported to cause complete yield loss in susceptible pigeonpea cultivars. Various studies to elucidate genomic architecture of the two traits have revealed significant marker–trait associations for use in breeding programs. However, these DNA markers could not be used effectively in genomics-assisted breeding for developing FW and SMD resistant varieties primarily due to pathogen variability, location or background specificity, lesser phenotypic variance explained by the reported QTL and cost-inefficiency of the genotyping assays. Therefore, in the present study, a novel appro...
Sterility mosaic disease (SMD), an important biotic constraint on pigeonpea (Cajanus cajan (L) Mills...
Fast forward genetic mapping combines with whole genome sequencing (WGS) and bulked segregant analys...
In En) Good progress has been made during the past 15 years in breeding for disease resistance in pi...
Fusarium wilt (FW) is one of the most important biotic stresses causing yield losses in pigeonpea. G...
Fusarium wilt (FW) and Sterility mosaic disease (SMD) are the two important diseases of pigeonpea (C...
In order to maximize polymorphism in the mapping populations for mapping loci for Fusarium wilt (FW)...
To map resistance genes for Fusarium wilt (FW) and sterility mosaic disease (SMD) in pigeonpea, sequ...
Sterility mosaic disease (SMD) is one of the serious production constraints that may lead to complet...
Fusarium wilt is an important disease of pigeonpea [Cajanus cajan (L.) Millsp.] and it can cause sev...
The long-stagnated productivity of pigeonpea may be attributed to its vulnerability to several disea...
Fusarium wilt is one of the most destructive biotic stresses of pigeonpea [Cajanus cajan (L.) Mills...
Fusarium wilt (FW) and Sterility mosaic disease (SMD) are important biotic constraints to pigeonpea ...
Fusarium wilt is a plant disease caused by Fusarium udum (Butler). It is a soil and seed borne fungu...
Inheritance of resistance to Fusarium wilt (FW) disease caused by Fusarium udum was investigated in ...
Fusarium wilt caused by Fusarium udum Butler is the most important disease of pigeonpea worldwide. O...
Sterility mosaic disease (SMD), an important biotic constraint on pigeonpea (Cajanus cajan (L) Mills...
Fast forward genetic mapping combines with whole genome sequencing (WGS) and bulked segregant analys...
In En) Good progress has been made during the past 15 years in breeding for disease resistance in pi...
Fusarium wilt (FW) is one of the most important biotic stresses causing yield losses in pigeonpea. G...
Fusarium wilt (FW) and Sterility mosaic disease (SMD) are the two important diseases of pigeonpea (C...
In order to maximize polymorphism in the mapping populations for mapping loci for Fusarium wilt (FW)...
To map resistance genes for Fusarium wilt (FW) and sterility mosaic disease (SMD) in pigeonpea, sequ...
Sterility mosaic disease (SMD) is one of the serious production constraints that may lead to complet...
Fusarium wilt is an important disease of pigeonpea [Cajanus cajan (L.) Millsp.] and it can cause sev...
The long-stagnated productivity of pigeonpea may be attributed to its vulnerability to several disea...
Fusarium wilt is one of the most destructive biotic stresses of pigeonpea [Cajanus cajan (L.) Mills...
Fusarium wilt (FW) and Sterility mosaic disease (SMD) are important biotic constraints to pigeonpea ...
Fusarium wilt is a plant disease caused by Fusarium udum (Butler). It is a soil and seed borne fungu...
Inheritance of resistance to Fusarium wilt (FW) disease caused by Fusarium udum was investigated in ...
Fusarium wilt caused by Fusarium udum Butler is the most important disease of pigeonpea worldwide. O...
Sterility mosaic disease (SMD), an important biotic constraint on pigeonpea (Cajanus cajan (L) Mills...
Fast forward genetic mapping combines with whole genome sequencing (WGS) and bulked segregant analys...
In En) Good progress has been made during the past 15 years in breeding for disease resistance in pi...