Abstract Background Cotton is the world’s most important natural textile fiber and a significant oilseed crop. Decoding cotton genomes will provide the ultimate reference and resource for research and utilization of the species. Integration of high-density genetic maps with genomic sequence information will largely accelerate the process of whole-genome assembly in cotton. Results In this paper, we update a high-density interspecific genetic linkage map of allotetraploid cultivated cotton. An additional 1,167 marker loci have been added to our previously published map of 2,247 loci. Three new marker types, InDel (insertion-deletion) and SNP (single nucleotide polymorphism) developed from gene information, and REMAP (retrotransposon-microsat...
Narrow genetic base and complex allotetraploid genome of cotton (Gossypium hirsutum L.) is stimulati...
Abstract Upland cotton (Gossypium hirsutum L.) is an important economic crop for renewable textile f...
Cotton fiber is an ideal model to study cell elongation and cell wall construction in plants. During...
A consensus genetic map of tetraploid cotton was constructed using six high-density maps and after t...
<div><p>A consensus genetic map of tetraploid cotton was constructed using six high-density maps and...
© 2015 Nature America, Inc. All rights reserved. Upland cotton is a model for polyploid crop domesti...
A consensus genetic map of tetraploid cotton was constructed using six high-density maps and after t...
The narrow genetic base of Upland cotton has slowed growth of its productivity as a crop and perhaps...
<div><p>Upland cotton (<i>Gossypium hirsutum</i> L., 2n = 52, AADD) is an allotetraploid, therefore ...
Abstract Background Gossypium barbadense (Sea Island, Egyptian or Pima cotton) cotton has high fiber...
The challenge in tetraploid cotton cultivars is the narrow genetic base and therefore, the bottlenec...
AbstractThe narrow genetic base of cultivated cotton germplasm is hindering the cotton productivity ...
A consensus genetic map of tetraploid cotton was constructed using six high-density maps and after t...
AbstractCotton is the world's most important natural fiber crop. It is also a model system for study...
A consensus genetic map of tetraploid cotton was constructed using six high-density maps and after t...
Narrow genetic base and complex allotetraploid genome of cotton (Gossypium hirsutum L.) is stimulati...
Abstract Upland cotton (Gossypium hirsutum L.) is an important economic crop for renewable textile f...
Cotton fiber is an ideal model to study cell elongation and cell wall construction in plants. During...
A consensus genetic map of tetraploid cotton was constructed using six high-density maps and after t...
<div><p>A consensus genetic map of tetraploid cotton was constructed using six high-density maps and...
© 2015 Nature America, Inc. All rights reserved. Upland cotton is a model for polyploid crop domesti...
A consensus genetic map of tetraploid cotton was constructed using six high-density maps and after t...
The narrow genetic base of Upland cotton has slowed growth of its productivity as a crop and perhaps...
<div><p>Upland cotton (<i>Gossypium hirsutum</i> L., 2n = 52, AADD) is an allotetraploid, therefore ...
Abstract Background Gossypium barbadense (Sea Island, Egyptian or Pima cotton) cotton has high fiber...
The challenge in tetraploid cotton cultivars is the narrow genetic base and therefore, the bottlenec...
AbstractThe narrow genetic base of cultivated cotton germplasm is hindering the cotton productivity ...
A consensus genetic map of tetraploid cotton was constructed using six high-density maps and after t...
AbstractCotton is the world's most important natural fiber crop. It is also a model system for study...
A consensus genetic map of tetraploid cotton was constructed using six high-density maps and after t...
Narrow genetic base and complex allotetraploid genome of cotton (Gossypium hirsutum L.) is stimulati...
Abstract Upland cotton (Gossypium hirsutum L.) is an important economic crop for renewable textile f...
Cotton fiber is an ideal model to study cell elongation and cell wall construction in plants. During...