The invasive freshwater crayfish Orconectes limosus mitogenome was recovered by genome skimming. The mitogenome is 16,223 base pairs in length consisting of 13 protein-coding genes, 2 ribosomal subunit genes, 22 transfer RNAs, and a non-coding AT-rich region. The O. limosus mitogenome has an AT bias of 71.37% and base composition of 39.8% for T, 10.3% for C, 31.5% for A, and 18.4% for G. The mitogene order is identical to two other genera of northern hemisphere crayfish that have been sequenced for this organelle
Molecular phylogenetics has benefited tremendously from the advent of next‐generation sequencing, en...
Substantial new DNA data were obtained by sequencing the mitochondrial genomes of four crustacean sp...
Due to human action, the rusty crayfish (Orconectes rusticus) is now present in local rivers and pla...
The Austropotamobius pallipes complete mitogenome has been recovered using Next-Gen sequencing. Our ...
Next-Gen sequencing was used to recover the complete mitochondrial genome of Cherax tenuimanus. The ...
The complete mitochondrial genome of a highland freshwater crayfish, Cherax monticola, was recovered...
The complete mitochondrial genome of a highland freshwater crayfish, Cherax monticola, was recovered...
The commercial freshwater crayfish Cherax quadricarinatus complete mitochondrial genome was recovere...
The complete mitochondrial genome of the enigmatic freshwater crayfish Engaeus lyelli was sequenced ...
The mitogenome of Paranephrops planifrons, was obtained by next generation sequencing. This crayfish...
The complete mitochondrial genome of Cherax cainii was recovered from partial genome sequencing data...
The mitogenome of Paranephrops planifrons, was obtained by next generation sequencing. This crayfish...
The mitochondrial genome sequence of the Australian crayfish, Euastacus yarraensis, is documented an...
The complete mitochondrial genome of Cherax glaber was sequenced using the HiSeq platform. The mitog...
The mitogenome of the black yabby, Geocharax gracilis, was sequenced using the MiSeq Personal Sequen...
Molecular phylogenetics has benefited tremendously from the advent of next‐generation sequencing, en...
Substantial new DNA data were obtained by sequencing the mitochondrial genomes of four crustacean sp...
Due to human action, the rusty crayfish (Orconectes rusticus) is now present in local rivers and pla...
The Austropotamobius pallipes complete mitogenome has been recovered using Next-Gen sequencing. Our ...
Next-Gen sequencing was used to recover the complete mitochondrial genome of Cherax tenuimanus. The ...
The complete mitochondrial genome of a highland freshwater crayfish, Cherax monticola, was recovered...
The complete mitochondrial genome of a highland freshwater crayfish, Cherax monticola, was recovered...
The commercial freshwater crayfish Cherax quadricarinatus complete mitochondrial genome was recovere...
The complete mitochondrial genome of the enigmatic freshwater crayfish Engaeus lyelli was sequenced ...
The mitogenome of Paranephrops planifrons, was obtained by next generation sequencing. This crayfish...
The complete mitochondrial genome of Cherax cainii was recovered from partial genome sequencing data...
The mitogenome of Paranephrops planifrons, was obtained by next generation sequencing. This crayfish...
The mitochondrial genome sequence of the Australian crayfish, Euastacus yarraensis, is documented an...
The complete mitochondrial genome of Cherax glaber was sequenced using the HiSeq platform. The mitog...
The mitogenome of the black yabby, Geocharax gracilis, was sequenced using the MiSeq Personal Sequen...
Molecular phylogenetics has benefited tremendously from the advent of next‐generation sequencing, en...
Substantial new DNA data were obtained by sequencing the mitochondrial genomes of four crustacean sp...
Due to human action, the rusty crayfish (Orconectes rusticus) is now present in local rivers and pla...