Literature DB >> 27511190

Genomic Methods Take the Plunge: Recent Advances in High-Throughput Sequencing of Marine Mammals.

Kristina M Cammen1, Kimberly R Andrews2, Emma L Carroll2, Andrew D Foote2, Emily Humble2, Jane I Khudyakov2, Marie Louis2, Michael R McGowen2, Morten Tange Olsen2, Amy M Van Cise2.   

Abstract

The dramatic increase in the application of genomic techniques to non-model organisms (NMOs) over the past decade has yielded numerous valuable contributions to evolutionary biology and ecology, many of which would not have been possible with traditional genetic markers. We review this recent progression with a particular focus on genomic studies of marine mammals, a group of taxa that represent key macroevolutionary transitions from terrestrial to marine environments and for which available genomic resources have recently undergone notable rapid growth. Genomic studies of NMOs utilize an expanding range of approaches, including whole genome sequencing, restriction site-associated DNA sequencing, array-based sequencing of single nucleotide polymorphisms and target sequence probes (e.g., exomes), and transcriptome sequencing. These approaches generate different types and quantities of data, and many can be applied with limited or no prior genomic resources, thus overcoming one traditional limitation of research on NMOs. Within marine mammals, such studies have thus far yielded significant contributions to the fields of phylogenomics and comparative genomics, as well as enabled investigations of fitness, demography, and population structure. Here we review the primary options for generating genomic data, introduce several emerging techniques, and discuss the suitability of each approach for different applications in the study of NMOs. © The American Genetic Association 2016. All rights reserved. For permissions, please e-mail: journals.permissions@oup.com.

Entities:  

Keywords:  RADseq; RNAseq; SNP array; non-model organisms; target sequence capture; whole genome sequencing

Mesh:

Year:  2016        PMID: 27511190     DOI: 10.1093/jhered/esw044

Source DB:  PubMed          Journal:  J Hered        ISSN: 0022-1503            Impact factor:   2.645


  11 in total

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