Odintifier - A computational method for identifying insertions of organellar origin from modern and ancient high-throughput sequencing data based on haplotype phasing.
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%0 Journal Article
%1 journals/bmcbi/CastruitaMBWG15
%A Castruita, Jose Samaniego
%A Mendoza, Marie Zepeda
%A Barnett, Ross
%A Wales, Nathan
%A Gilbert, Marcus
%D 2015
%J BMC Bioinform.
%K dblp
%P 232:1-232:13
%T Odintifier - A computational method for identifying insertions of organellar origin from modern and ancient high-throughput sequencing data based on haplotype phasing.
%U http://dblp.uni-trier.de/db/journals/bmcbi/bmcbi16.html#CastruitaMBWG15
%V 16
@article{journals/bmcbi/CastruitaMBWG15,
added-at = {2020-11-05T00:00:00.000+0100},
author = {Castruita, Jose Samaniego and Mendoza, Marie Zepeda and Barnett, Ross and Wales, Nathan and Gilbert, Marcus},
biburl = {https://www.bibsonomy.org/bibtex/2b64a35ce6ba5411919b59bc9285c706b/dblp},
ee = {https://www.wikidata.org/entity/Q28646132},
interhash = {9644b1ad77b98d6dca8212f54baaa560},
intrahash = {b64a35ce6ba5411919b59bc9285c706b},
journal = {BMC Bioinform.},
keywords = {dblp},
pages = {232:1-232:13},
timestamp = {2020-11-06T11:35:07.000+0100},
title = {Odintifier - A computational method for identifying insertions of organellar origin from modern and ancient high-throughput sequencing data based on haplotype phasing.},
url = {http://dblp.uni-trier.de/db/journals/bmcbi/bmcbi16.html#CastruitaMBWG15},
volume = 16,
year = 2015
}