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Find video protocols related to scientific articles indexed in Pubmed.
The complete mitochondrial genome of the blackspotted croaker Protonibea diacanthus (Perciformes, Sciaenidae).
Mitochondrial DNA
PUBLISHED: 09-12-2014
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Abstract We present the complete mitochondrial genome of Protonibea diacanthus in this study. The mitochondrial genome is 16,535?bp in length, containing 13 protein-coding genes, 2 rRNA genes, 22 tRNA genes and a control region. All of them are encoded on the heavy strand except ND6 and 8 tRNA genes on the light strand. The nucleotide compositions of the light strand are 31.09% of G, 27.54% of T, 25.34% of A and 16.03% of C. All the protein-coding genes start with ATG initiation codon except ATP6 with GTG, and 5 types of inferred termination codons are AGA (COXI and COXII), T (ND3, ND4, Cytb), TA (ND2, COXIII and ATP6), TAA (ND1, ATP8 and ND4L) and TAG (DN5 and ND6). There are 14 intergenic spacers and 7 gene overlaps. The tandem repeat sequence is observed in 12S-rRNA, 16S-rRNA, tRNA(Trp), tRNA(Ala), COXIII, ND4L and ND4 genes. Gene arrangement and distribution are consistent with the typical vertebrates.
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The complete mitochondrial genome of the Rhabdosargus sarba (Perciformes: Sparidae).
Mitochondrial DNA
PUBLISHED: 09-11-2014
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Abstract The complete mitochondrial genome of the Rhabdosargus sarba was presented in our study. The mitochondrial genome is 16,644?bp long and consists of 13 protein-coding genes, 2 rRNA genes, 22 tRNA genes and a control region. The gene order and composition of R. sarba mitochondrial genome was similar to that of most other vertebrates. The nucleotide compositions of the light strand are 27.01% of A, 17.96% of C, 26.02% of T and 29.01% of G. With the exception of the NADH dehydrogenase subunit 6 (ND6) and eight tRNA genes, all other mitochondrial genes are encoded on the heavy strand.
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What is Visualize?

JoVE Visualize is a tool created to match the last 5 years of PubMed publications to methods in JoVE's video library.

How does it work?

We use abstracts found on PubMed and match them to JoVE videos to create a list of 10 to 30 related methods videos.

Video X seems to be unrelated to Abstract Y...

In developing our video relationships, we compare around 5 million PubMed articles to our library of over 4,500 methods videos. In some cases the language used in the PubMed abstracts makes matching that content to a JoVE video difficult. In other cases, there happens not to be any content in our video library that is relevant to the topic of a given abstract. In these cases, our algorithms are trying their best to display videos with relevant content, which can sometimes result in matched videos with only a slight relation.