The release of barley genome sequences will accelerate the genomic and genetic research in barley. Using next-generation sequencing (NGS) technology, it is possible to re-sequence entire barley genomes or transcriptomes more efficiently and economically than ever before. The chapter covers barley genetic and physical maps, and barley genome sequences. We summarized NGS sequencing technologies and their applications in genetic marker development, QTL mapping, gene cloning, transcript profiling identification, and epigenetic mechanism discovery in barley. These technologies will provide efficient tools to explore barley germplasm and improve breeding efficiency
Barley (Hordeum vulgare L.) is among the world's earliest domesticated and most important crop plant...
Barley (Hordeum vulgare L.) possesses a large and highly repetitive genome of 5.1 Gb that has h...
Advancements in next-generation sequencing technology have enabled whole genome re-sequencing in man...
The barley genome is comprised of more than 39,000 high-confidence genes, which represent many valua...
<div><p>The rapid development of next-generation sequencing platforms has enabled the use of sequenc...
The characterization of genetic polymorphism is a crucial step in both genetic studies and breeding ...
DNA sequencing technology is undergoing a revolution with the commercialization of second generation...
The characterization of genetic polymorphism is a crucial step in both genetic studies and breeding ...
AbstractHigh-density genetic markers are required for genotyping and linkage mapping in identifying ...
The identification of wheat and barley genes controlling important agronomic traits using positional...
The rapid development of next-generation sequencing platforms has enabled the use of sequencing for ...
This work presents a novel technique to speed up plant breeding concerning traits of agronomic impor...
The aim of this study was to estimate the accuracy and conergence of newly developed barley (Hordeum...
Session 6 : Barley protein, feed and foodFunctional genomics is a technology through which large set...
Barley (Hordeum vulgare L.) is among the world's earliest domesticated and most important crop plant...
Barley (Hordeum vulgare L.) is among the world's earliest domesticated and most important crop plant...
Barley (Hordeum vulgare L.) possesses a large and highly repetitive genome of 5.1 Gb that has h...
Advancements in next-generation sequencing technology have enabled whole genome re-sequencing in man...
The barley genome is comprised of more than 39,000 high-confidence genes, which represent many valua...
<div><p>The rapid development of next-generation sequencing platforms has enabled the use of sequenc...
The characterization of genetic polymorphism is a crucial step in both genetic studies and breeding ...
DNA sequencing technology is undergoing a revolution with the commercialization of second generation...
The characterization of genetic polymorphism is a crucial step in both genetic studies and breeding ...
AbstractHigh-density genetic markers are required for genotyping and linkage mapping in identifying ...
The identification of wheat and barley genes controlling important agronomic traits using positional...
The rapid development of next-generation sequencing platforms has enabled the use of sequencing for ...
This work presents a novel technique to speed up plant breeding concerning traits of agronomic impor...
The aim of this study was to estimate the accuracy and conergence of newly developed barley (Hordeum...
Session 6 : Barley protein, feed and foodFunctional genomics is a technology through which large set...
Barley (Hordeum vulgare L.) is among the world's earliest domesticated and most important crop plant...
Barley (Hordeum vulgare L.) is among the world's earliest domesticated and most important crop plant...
Barley (Hordeum vulgare L.) possesses a large and highly repetitive genome of 5.1 Gb that has h...
Advancements in next-generation sequencing technology have enabled whole genome re-sequencing in man...