Researchers have assembled thousands of eukaryotic genomes using Illumina reads, but traditional mate-pair libraries cannot span all repetitive elements, resulting in highly fragmented assemblies. However, both chromosome conformation capture techniques, such as Hi-C and Dovetail Genomics Chicago libraries and long-read sequencing, such as Pacific Biosciences and Oxford Nanopore, help span and resolve repetitive regions and therefore improve genome assemblies. One important livestock species of arid regions that does not have a high-quality contiguous reference genome is the dromedary (Camelus dromedarius). Draft genomes exist but are highly fragmented, and a high-quality reference genome is needed to understand adaptation to desert environ...
Published: 16 January 2019Rapid innovation in sequencing technologies and improvement in assembly al...
Thesis (Ph.D.)--University of Washington, 2022High-quality reference genomes are once again in vogue...
Abstract Background Long read technologies have revolutionized de novo genome assembly by generating...
Researchers have assembled thousands of eukaryotic genomes using Illumina reads, but traditional mat...
Researchers have assembled thousands of eukaryotic genomes using Illumina reads, but traditional mat...
The single-humped dromedary (Camelus dromedarius) is the most numerous and widespread of domestic ca...
The dromedary camel is an economically and socially important species of livestock in many parts of ...
The dromedary camel is an economically and socially important species of livestock in many parts of ...
The dromedary camel is an economically and socially important species of livestock in many parts of ...
The dromedary camel is an economically and socially important species of livestock in many parts of ...
The dromedary camel is an economically and socially important species of livestock in many parts of ...
The dromedary camel is an economically and socially important species of livestock in many parts of ...
The dromedary camel is an economically and socially important species of livestock in many parts of ...
The single-humped dromedary (Camelus dromedarius) is the most numerous and widespread of domestic ca...
Transposable elements (TEs) along with simple sequence repeats (SSRs) are prevalent in eukaryotic ge...
Published: 16 January 2019Rapid innovation in sequencing technologies and improvement in assembly al...
Thesis (Ph.D.)--University of Washington, 2022High-quality reference genomes are once again in vogue...
Abstract Background Long read technologies have revolutionized de novo genome assembly by generating...
Researchers have assembled thousands of eukaryotic genomes using Illumina reads, but traditional mat...
Researchers have assembled thousands of eukaryotic genomes using Illumina reads, but traditional mat...
The single-humped dromedary (Camelus dromedarius) is the most numerous and widespread of domestic ca...
The dromedary camel is an economically and socially important species of livestock in many parts of ...
The dromedary camel is an economically and socially important species of livestock in many parts of ...
The dromedary camel is an economically and socially important species of livestock in many parts of ...
The dromedary camel is an economically and socially important species of livestock in many parts of ...
The dromedary camel is an economically and socially important species of livestock in many parts of ...
The dromedary camel is an economically and socially important species of livestock in many parts of ...
The dromedary camel is an economically and socially important species of livestock in many parts of ...
The single-humped dromedary (Camelus dromedarius) is the most numerous and widespread of domestic ca...
Transposable elements (TEs) along with simple sequence repeats (SSRs) are prevalent in eukaryotic ge...
Published: 16 January 2019Rapid innovation in sequencing technologies and improvement in assembly al...
Thesis (Ph.D.)--University of Washington, 2022High-quality reference genomes are once again in vogue...
Abstract Background Long read technologies have revolutionized de novo genome assembly by generating...