Illumina TruSeq Synthetic Long-Reads Empower De Novo Assembly and Resolve Complex, Highly-Repetitive Transposable Elements
- Publication Date
- September 04, 2014
- Journal
- PLOS ONE
- Authors
- Rajiv C. Mc Coy, Ryan W. Taylor, Timothy A. Blauwkamp, Joanna L. Kelley, et al
- Volume
- 9
- Issue
- 9
- Pages
- e106689
- DOI
- https://dx.plos.org/10.1371/journal.pone.0106689
- Publisher URL
- http://journals.plos.org/plosone/article?id=10.1371%2Fjournal.pone.0106689
- PubMed
- http://www.ncbi.nlm.nih.gov/pubmed/25188499
- PubMed Central
- http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4154752
- Europe PMC
- http://europepmc.org/abstract/MED/25188499
- Web of Science
- 000341271500070
- Scopus
- 84907087679
- Mendeley
- http://www.mendeley.com/research/illumina-truseq-synthetic-longreads-empower-novo-assembly-resolve-complex-highlyrepetitive-transposa
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Mendeley | Further Information
{"title"=>"Illumina TruSeq synthetic long-reads empower de novo assembly and resolve complex, highly-repetitive transposable elements", "type"=>"journal", "authors"=>[{"first_name"=>"Rajiv C.", "last_name"=>"McCoy", "scopus_author_id"=>"55947815700"}, {"first_name"=>"Ryan W.", "last_name"=>"Taylor", "scopus_author_id"=>"56358883800"}, {"first_name"=>"Timothy A.", "last_name"=>"Blauwkamp", "scopus_author_id"=>"57189087115"}, {"first_name"=>"Joanna L.", "last_name"=>"Kelley", "scopus_author_id"=>"8234514200"}, {"first_name"=>"Michael", "last_name"=>"Kertesz", "scopus_author_id"=>"56212051200"}, {"first_name"=>"Dmitry", "last_name"=>"Pushkarev", "scopus_author_id"=>"55190079900"}, {"first_name"=>"Dmitri A.", "last_name"=>"Petrov", "scopus_author_id"=>"7103238750"}, {"first_name"=>"Anna Sophie", "last_name"=>"Fiston-Lavier", "scopus_author_id"=>"22234267900"}], "year"=>2014, "source"=>"PLoS ONE", "identifiers"=>{"doi"=>"10.1371/journal.pone.0106689", "sgr"=>"84907087679", "issn"=>"19326203", "pui"=>"600018084", "isbn"=>"1932-6203 (Electronic) 1932-6203 (Linking)", "pmid"=>"25188499", "scopus"=>"2-s2.0-84907087679"}, "id"=>"bac95aa9-3384-3d66-8f8f-63b14027baca", "abstract"=>"High-throughput DNA sequencing technologies have revolutionized genomic analysis, including the de novo assembly of whole genomes. Nevertheless, assembly of complex genomes remains challenging, in part due to the presence of dispersed repeats which introduce ambiguity during genome reconstruction. Transposable elements (TEs) can be particularly problematic, especially for TE families exhibiting high sequence identity, high copy number, or complex genomic arrangements. While TEs strongly affect genome function and evolution, most current de novo assembly approaches cannot resolve long, identical, and abundant families of TEs. Here, we applied a novel Illumina technology called TruSeq synthetic long-reads, which are generated through highly-parallel library preparation and local assembly of short read data and which achieve lengths of 1.5–18.5 Kbp with an extremely low error rate (0.03% per base). To test the utility of this technology, we sequenced and assembled the genome of the model organism Drosophila melanogaster (reference genome strain y; cn, bw, sp) achieving an N50 contig size of 69.7 Kbp and covering 96.9% of the euchromatic chromosome arms of the current reference genome. TruSeq synthetic long-read technology enables placement of individual TE copies in their proper genomic locations as well as accurate reconstruction of TE sequences. We entirely recovered and accurately placed 4,229 (77.8%) of the 5,434 annotated transposable elements with perfect identity to the current reference genome. As TEs are ubiquitous features of genomes of many species, TruSeq synthetic long-reads, and likely other methods that generate long-reads, offer a powerful approach to improve de novo assemblies of whole genomes.", "link"=>"http://www.mendeley.com/research/illumina-truseq-synthetic-longreads-empower-novo-assembly-resolve-complex-highlyrepetitive-transposa", "reader_count"=>269, "reader_count_by_academic_status"=>{"Unspecified"=>2, "Professor > Associate Professor"=>21, "Librarian"=>1, "Researcher"=>81, "Student > Doctoral Student"=>3, "Student > Ph. D. Student"=>58, "Student > Postgraduate"=>13, "Other"=>15, "Student > Master"=>39, "Student > Bachelor"=>22, "Lecturer"=>3, "Lecturer > Senior Lecturer"=>2, "Professor"=>9}, "reader_count_by_user_role"=>{"Unspecified"=>2, "Professor > Associate Professor"=>21, "Librarian"=>1, "Researcher"=>81, "Student > Doctoral Student"=>3, "Student > Ph. D. Student"=>58, "Student > Postgraduate"=>13, "Other"=>15, "Student > Master"=>39, "Student > Bachelor"=>22, "Lecturer"=>3, "Lecturer > Senior Lecturer"=>2, "Professor"=>9}, "reader_count_by_subject_area"=>{"Unspecified"=>7, "Agricultural and Biological Sciences"=>172, "Arts and Humanities"=>1, "Chemistry"=>4, "Computer Science"=>19, "Earth and Planetary Sciences"=>1, "Engineering"=>4, "Environmental Science"=>7, "Biochemistry, Genetics and Molecular Biology"=>42, "Materials Science"=>1, "Medicine and Dentistry"=>9, "Neuroscience"=>1, "Immunology and Microbiology"=>1}, "reader_count_by_subdiscipline"=>{"Materials Science"=>{"Materials Science"=>1}, "Medicine and Dentistry"=>{"Medicine and Dentistry"=>9}, "Unspecified"=>{"Unspecified"=>7}, "Environmental Science"=>{"Environmental Science"=>7}, "Arts and Humanities"=>{"Arts and Humanities"=>1}, "Engineering"=>{"Engineering"=>4}, "Chemistry"=>{"Chemistry"=>4}, "Neuroscience"=>{"Neuroscience"=>1}, "Earth and Planetary Sciences"=>{"Earth and Planetary Sciences"=>1}, "Immunology and Microbiology"=>{"Immunology and Microbiology"=>1}, "Agricultural and Biological Sciences"=>{"Agricultural and Biological Sciences"=>172}, "Computer Science"=>{"Computer Science"=>19}, "Biochemistry, Genetics and Molecular Biology"=>{"Biochemistry, Genetics and Molecular Biology"=>42}}, "reader_count_by_country"=>{"Argentina"=>2, "United States"=>11, "Japan"=>1, "United Kingdom"=>1, "India"=>1, "New Zealand"=>1, "Canada"=>2, "Netherlands"=>2, "Austria"=>1, "Czech Republic"=>1, "South Korea"=>1, "Sweden"=>2, "Korea (South)"=>1, "China"=>2, "Taiwan"=>1, "Brazil"=>5, "Mexico"=>1, "France"=>1, "Australia"=>1, "Germany"=>5}, "group_count"=>9}CrossRef
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Scopus | Further Information
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- {"id"=>"507912011033096193", "text"=>"RT @mt_ur_mind: Illumina TruSeq allows de novo assembly and resolution of Drosophila repetitive regions: http://t.co/uRtLDjjxY9 http://t.co…", "created_at"=>"2014-09-05T15:23:54Z", "user"=>"nzradu", "user_name"=>"Radu Zabet", "user_profile_image"=>"http://pbs.twimg.com/profile_images/3442034145/38a4e0e15ac9b561b44fa90ff83bef44_normal.png"}
- {"id"=>"507930469522866176", "text"=>"RT @mt_ur_mind: Illumina TruSeq allows de novo assembly and resolution of Drosophila repetitive regions: http://t.co/uRtLDjjxY9 http://t.co…", "created_at"=>"2014-09-05T16:37:15Z", "user"=>"AlbertVilella", "user_name"=>"Albert Vilella", "user_profile_image"=>"http://pbs.twimg.com/profile_images/2890168195/a95e1cde1147304b29dcdad5c3ba4119_normal.jpeg"}
- {"id"=>"507933647815839746", "text"=>"RT @mt_ur_mind: Illumina TruSeq allows de novo assembly and resolution of Drosophila repetitive regions: http://t.co/uRtLDjjxY9 http://t.co…", "created_at"=>"2014-09-05T16:49:53Z", "user"=>"Eco32I", "user_name"=>"Ilya S", "user_profile_image"=>"http://pbs.twimg.com/profile_images/467423478115614720/9ozoI3k0_normal.jpeg"}
- {"id"=>"507933675753721856", "text"=>"Illumina TruSeq SLR allows de novo assembly and resolution of the same old thing: http://t.co/WqXSaNTpzu", "created_at"=>"2014-09-05T16:49:59Z", "user"=>"glennklockwood", "user_name"=>"Glenn K. Lockwood", "user_profile_image"=>"http://pbs.twimg.com/profile_images/378800000745993053/83d475bfa48a3b58236abad4564579b9_normal.jpeg"}
- {"id"=>"508006510971342848", "text"=>"RT @mt_ur_mind: Illumina TruSeq allows de novo assembly and resolution of Drosophila repetitive regions: http://t.co/uRtLDjjxY9 http://t.co…", "created_at"=>"2014-09-05T21:39:25Z", "user"=>"ComMetUK", "user_name"=>"ComMet", "user_profile_image"=>"http://abs.twimg.com/sticky/default_profile_images/default_profile_4_normal.png"}
- {"id"=>"508034126411464704", "text"=>"RT @rajivmccoy: Our paper evaluating synthetic long-reads for genome assembly out in @PLOSONE : http://t.co/dSgDMCAEmp @PetrovADmitri @afis…", "created_at"=>"2014-09-05T23:29:09Z", "user"=>"rwtaylor", "user_name"=>"Ryan W. Taylor", "user_profile_image"=>"http://pbs.twimg.com/profile_images/378800000543909643/211bb4f869963c1b8693e1b7c00645d0_normal.jpeg"}
- {"id"=>"508998779089870848", "text"=>"Illumina TruSeq Synthetic Long-Reads (SLR) \nhttp://t.co/Gt8qDuzP1B", "created_at"=>"2014-09-08T15:22:20Z", "user"=>"schimaer", "user_name"=>"Martin P Schilling", "user_profile_image"=>"http://pbs.twimg.com/profile_images/465936055187681280/k7tbS6H2_normal.jpeg"}
- {"id"=>"510427735479439360", "text"=>"Illumina TruSeq Synthetic Long-Reads Empower De Novo Assembly and Resolve Complex, Repetitive Transposable Elements http://t.co/LosFdzpdF7", "created_at"=>"2014-09-12T14:00:30Z", "user"=>"genetics_blog", "user_name"=>"Stephen Turner", "user_profile_image"=>"http://pbs.twimg.com/profile_images/378800000676640256/2c35fb818ebea5cada2e88f3ac8b3a71_normal.jpeg"}
- {"id"=>"510444910235750401", "text"=>"RT @genetics_blog: Illumina TruSeq Synthetic Long-Reads Empower De Novo Assembly and Resolve Complex, Repetitive Transposable Elements http…", "created_at"=>"2014-09-12T15:08:44Z", "user"=>"jftaly", "user_name"=>"Jean-François Taly", "user_profile_image"=>"http://pbs.twimg.com/profile_images/459334155717709824/tb6epY7K_normal.jpeg"}
- {"id"=>"510454198161252352", "text"=>"RT @genetics_blog: Illumina TruSeq Synthetic Long-Reads Empower De Novo Assembly and Resolve Complex, Repetitive Transposable Elements http…", "created_at"=>"2014-09-12T15:45:39Z", "user"=>"scilahn", "user_name"=>"Richard Ahn", "user_profile_image"=>"http://pbs.twimg.com/profile_images/422291742033850369/7L2BvCf4_normal.jpeg"}
- {"id"=>"511465411330998272", "text"=>"RT @rajivmccoy: Our paper evaluating synthetic long-reads for genome assembly out in @PLOSONE : http://t.co/dSgDMCAEmp @PetrovADmitri @afis…", "created_at"=>"2014-09-15T10:43:51Z", "user"=>"rumillaginettek", "user_name"=>"Milly Kay", "user_profile_image"=>"http://pbs.twimg.com/profile_images/476804239201558529/9ifDtkkO_normal.jpeg"}
- {"id"=>"513712493789581312", "text"=>"RT @genetics_blog: Illumina TruSeq Synthetic Long-Reads Empower De Novo Assembly and Resolve Complex, Repetitive Transposable Elements http…", "created_at"=>"2014-09-21T15:32:57Z", "user"=>"pigbird666", "user_name"=>"Tony wang", "user_profile_image"=>"http://pbs.twimg.com/profile_images/3181896836/b9931d7b070479eb4d9e5ac8d38d6f41_normal.jpeg"}
- {"id"=>"529890970218024962", "text"=>"Illumina TruSeq Synthetic Long-Reads Empower De Novo Assembly & Resolve Highly-Repetitive Transposable Elements http://t.co/qN31O7hJAx", "created_at"=>"2014-11-05T07:00:26Z", "user"=>"mjpallen", "user_name"=>"Mark Pallen", "user_profile_image"=>"http://pbs.twimg.com/profile_images/416655586676056064/NDWIi0C7_normal.jpeg"}
- {"id"=>"533232326369488899", "text"=>"Recent papers using long read sequencing technologies give hope to mapping repetitive DNA\nhttp://t.co/YcfM877CcL and http://t.co/SyzCMqxSOa", "created_at"=>"2014-11-14T12:17:48Z", "user"=>"jessstapley", "user_name"=>"Jessica Stapley", "user_profile_image"=>"http://pbs.twimg.com/profile_images/344513261572193168/aecf889b4ba03e7509ebcde77e9586c4_normal.png"}
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PMC Usage Stats | Further Information
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Relative Metric
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