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Eleven novel major genomic regions harbouring 15 robust QTLs (10.7 31.3% R at 5.2 16.2 LOD) associated with three quantitative and one qualitative agro-morphological traits were identified and mapped on eight LGs.
Of the designed 21,499 InDel markers, 7,643 and 13,856 markers were physically mapped on eight chromosomes (Fig. 2D) and unanchored scaffolds of desi chickpea genome (Supplementary Table S1).
The 2 years multi-location field phenotyping data of DF and DM traits and genotyping information of 6,197 InDel markers genetically mapped on eight LGs were integrated for molecular mapping of QTLs.
The novel as well as robust and major QTLs governing four agro-morphological traits mapped on eight chromosomes were covered by different candidate gene (TFs -derived SSR and SNP markers (SupplemenTFs -derivedSSRand SNP.
In total, 14 QTLs with major and minor effects have been mapped on eight different B. oleracea chromosomes, suggesting that resistance to black rot disease is complex and quantitatively controlled by multiple genes in B. oleracea.
As a result, ~965 BACs including 163 minimum tilling path (MTP) clones could be mapped on eight pseudo-molecules of chickpea forming 491 hypothetical contigs representing 54,013,992 bp (~54 Mb) of the draft genome.
Similar(52)
Cropland acreage was mapped on two study sites in Ethiopia and in The Netherlands.
Twelve 2D fracture patterns mapped on three orthogonal planes were used to represent the fracture geometry of the rock mass.
These forces of change and resulting changes are mapped on three levels (vertically): landscape, transport system and technologies and solutions.
This reference genetic map identified six major genomic regions harbouring six robust QTLs mapped on five chromosomes, which explained 11 23% seed weight trait variation (7.6 10.5 LOD) in chickpea.
BPH resistance genes have been identified and mapped on six of 12 rice chromosomes (2, 3, 4, 6, 11, and 12).
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