Abstract Background Gossypium barbadense (Sea Island, Egyptian or Pima cotton) cotton has high fiber quality, however, few studies have investigated the genetic basis of its traits using molecular markers. Genome complexity reduction approaches such as genotyping-by-sequencing have been utilized to develop abundant markers for the construction of high-density genetic maps to locate quantitative trait loci (QTLs). Results The Chinese G. barbadense cultivar 5917 and American Pima S-7 were used to develop a recombinant inbred line (RIL) population with 143 lines. The 143 RILs together with their parents were tested in three replicated field tests for lint yield traits (boll weight and lint percentage) and fiber quality traits (fiber length, fi...
The narrow genetic base of Upland cotton has slowed growth of its productivity as a crop and perhaps...
QTLs for fiber length mapped in three generations of advanced backcross populations derived from cro...
Chromosome segment substitution lines MBI9804, MBI9855, MBI9752, and MBI9134, which were obtained by...
Abstract Background Upland Cotton (Gossypium hirsutum) is a very important cash crop known for its h...
Within the framework of a cotton breeding programme, molecular markers are used to improve the effic...
The tetraploid species Gossypium hirsutum is cultivated widely throughout the world with high yield ...
Background: The identification of quantitative trait loci (QTLs) that are stable and consistent acro...
Fiber quality and yield improvement are crucial for cotton domestication and breeding. With the tran...
<div><p>Cotton (<i>Gossypium hirsutum</i> L.) is an important agricultural crop that provides renewa...
Improving fiber quality of naturally colored cotton has become more important in recent years due to...
The genus Gossypium provides natural fiber for textile industry worldwide. Genetic improvement in co...
Cotton fiber properties are essential predictors of yarn performance. The suite of fiber quality tra...
WOS: 000355062000008Improving fiber quality of naturally colored cotton has become more important in...
<div><p>Limited polymorphism and narrow genetic base, due to genetic bottleneck through historic dom...
Abstract Background Improving cotton fiber length without reducing yield is one of the major goals o...
The narrow genetic base of Upland cotton has slowed growth of its productivity as a crop and perhaps...
QTLs for fiber length mapped in three generations of advanced backcross populations derived from cro...
Chromosome segment substitution lines MBI9804, MBI9855, MBI9752, and MBI9134, which were obtained by...
Abstract Background Upland Cotton (Gossypium hirsutum) is a very important cash crop known for its h...
Within the framework of a cotton breeding programme, molecular markers are used to improve the effic...
The tetraploid species Gossypium hirsutum is cultivated widely throughout the world with high yield ...
Background: The identification of quantitative trait loci (QTLs) that are stable and consistent acro...
Fiber quality and yield improvement are crucial for cotton domestication and breeding. With the tran...
<div><p>Cotton (<i>Gossypium hirsutum</i> L.) is an important agricultural crop that provides renewa...
Improving fiber quality of naturally colored cotton has become more important in recent years due to...
The genus Gossypium provides natural fiber for textile industry worldwide. Genetic improvement in co...
Cotton fiber properties are essential predictors of yarn performance. The suite of fiber quality tra...
WOS: 000355062000008Improving fiber quality of naturally colored cotton has become more important in...
<div><p>Limited polymorphism and narrow genetic base, due to genetic bottleneck through historic dom...
Abstract Background Improving cotton fiber length without reducing yield is one of the major goals o...
The narrow genetic base of Upland cotton has slowed growth of its productivity as a crop and perhaps...
QTLs for fiber length mapped in three generations of advanced backcross populations derived from cro...
Chromosome segment substitution lines MBI9804, MBI9855, MBI9752, and MBI9134, which were obtained by...