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Nova Southeastern University

Biology Faculty Articles

Mitogenome

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Full-Text Articles in Biology

Three Complete Mitochondrial Genomes Of Shortfin Mako Sharks, Isurus Oxyrinchus, From The Atlantic And Pacific Oceans, Marissa Mehlrose, Andrea Bernard, Kimberly A. Finnegan, Lauren E. Krausfeldt, Jose V. Lopez, Mahmood Shivji Jan 2022

Three Complete Mitochondrial Genomes Of Shortfin Mako Sharks, Isurus Oxyrinchus, From The Atlantic And Pacific Oceans, Marissa Mehlrose, Andrea Bernard, Kimberly A. Finnegan, Lauren E. Krausfeldt, Jose V. Lopez, Mahmood Shivji

Biology Faculty Articles

We present complete mitogenome sequences of three shortfin mako sharks (Isurus oxyrinchus) sampled from the western Pacific, and eastern and western Atlantic oceans. Mitogenome sequence lengths ranged between 16,699 bp and 16,702 bp, and all three mitogenomes contained one non-coding control region, two rRNA genes, 22 tRNA genes, and 13 protein-coding genes. Comparative assessment of five mitogenomes from globally distributed shortfin makos (the current three and two previously published mitogenomes) yielded 98.4% identity, with the protein-coding genes ATP8, ATP6, and ND5 as the most variable regions (sequence identities of 96.4%, 96.5%, and 97.6%, respectively). These mitogenome sequences contribute resources …


The Complete Mitochondrial Genome Of A Gray Reef Shark, Carcharhinus Amblyrhynchos (Carcharhiniformes: Carcharhinidae), From The Western Indian Ocean, Ela Patel, Andrea Bernard, Marissa Mehlrose, Sydney Harned, Kimberly A. Finnegan, Cristin K. Fitzpatrick, James S. Lea, Mahmood S. Shivji Oct 2020

The Complete Mitochondrial Genome Of A Gray Reef Shark, Carcharhinus Amblyrhynchos (Carcharhiniformes: Carcharhinidae), From The Western Indian Ocean, Ela Patel, Andrea Bernard, Marissa Mehlrose, Sydney Harned, Kimberly A. Finnegan, Cristin K. Fitzpatrick, James S. Lea, Mahmood S. Shivji

Biology Faculty Articles

We present the mitochondrial genome sequence of a gray reef shark, Carcharhinus amblyrhynchos (Bleeker 1856), a coral reef associated species. This is the first mitogenome for this species from the western Indian Ocean. The mitogenome is 16,705 bp in length, has 13 protein-coding genes, 22 tRNA genes, 2 rRNA genes and a non-coding control region, and demonstrates a gene arrangement congruent with other shark and most vertebrate species. This mitogenome provides a genomic resource for assisting with population, evolutionary and conservation studies for the gray reef shark, which is increasingly under threat from fisheries.


Successful Enrichment And Recovery Of Whole Mitochondrial Genomes From Ancient Human Dental Calculus, Andrew T. Ozga, Maria A. Nieves-Colon, Tanvi P. Honap, Krithivasan Sankaranarayanan, Courtney A. Hofman, George R. Milner, Cecil M. Lewis Jr., Anne C. Stone, Christina Warinner May 2016

Successful Enrichment And Recovery Of Whole Mitochondrial Genomes From Ancient Human Dental Calculus, Andrew T. Ozga, Maria A. Nieves-Colon, Tanvi P. Honap, Krithivasan Sankaranarayanan, Courtney A. Hofman, George R. Milner, Cecil M. Lewis Jr., Anne C. Stone, Christina Warinner

Biology Faculty Articles

Objectives

Archaeological dental calculus is a rich source of host‐associated biomolecules. Importantly, however, dental calculus is more accurately described as a calcified microbial biofilm than a host tissue. As such, concerns regarding destructive analysis of human remains may not apply as strongly to dental calculus, opening the possibility of obtaining human health and ancestry information from dental calculus in cases where destructive analysis of conventional skeletal remains is not permitted. Here we investigate the preservation of human mitochondrial DNA (mtDNA) in archaeological dental calculus and its potential for full mitochondrial genome (mitogenome) reconstruction in maternal lineage ancestry analysis.

Materials and …