Genome assembly with in vitro proximity ligation data and whole-genome triplication in lettuce

Genome assembly for many plant species can be challenging due to large size and high repeat content. Here, the authors usein vitroproximity ligation to assemble the genome of lettuce, revealing a family-specific triplication event and providing a comprehensive reference genome for a member of the Co...

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Autores principales: Sebastian Reyes-Chin-Wo, Zhiwen Wang, Xinhua Yang, Alexander Kozik, Siwaret Arikit, Chi Song, Liangfeng Xia, Lutz Froenicke, Dean O. Lavelle, María-José Truco, Rui Xia, Shilin Zhu, Chunyan Xu, Huaqin Xu, Xun Xu, Kyle Cox, Ian Korf, Blake C. Meyers, Richard W. Michelmore
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Lenguaje:EN
Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/823d172a538e484095f4425c36f8703c
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spelling oai:doaj.org-article:823d172a538e484095f4425c36f8703c2021-12-02T14:42:43ZGenome assembly with in vitro proximity ligation data and whole-genome triplication in lettuce10.1038/ncomms149532041-1723https://doaj.org/article/823d172a538e484095f4425c36f8703c2017-04-01T00:00:00Zhttps://doi.org/10.1038/ncomms14953https://doaj.org/toc/2041-1723Genome assembly for many plant species can be challenging due to large size and high repeat content. Here, the authors usein vitroproximity ligation to assemble the genome of lettuce, revealing a family-specific triplication event and providing a comprehensive reference genome for a member of the Compositae.Sebastian Reyes-Chin-WoZhiwen WangXinhua YangAlexander KozikSiwaret ArikitChi SongLiangfeng XiaLutz FroenickeDean O. LavelleMaría-José TrucoRui XiaShilin ZhuChunyan XuHuaqin XuXun XuKyle CoxIan KorfBlake C. MeyersRichard W. MichelmoreNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-11 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Sebastian Reyes-Chin-Wo
Zhiwen Wang
Xinhua Yang
Alexander Kozik
Siwaret Arikit
Chi Song
Liangfeng Xia
Lutz Froenicke
Dean O. Lavelle
María-José Truco
Rui Xia
Shilin Zhu
Chunyan Xu
Huaqin Xu
Xun Xu
Kyle Cox
Ian Korf
Blake C. Meyers
Richard W. Michelmore
Genome assembly with in vitro proximity ligation data and whole-genome triplication in lettuce
description Genome assembly for many plant species can be challenging due to large size and high repeat content. Here, the authors usein vitroproximity ligation to assemble the genome of lettuce, revealing a family-specific triplication event and providing a comprehensive reference genome for a member of the Compositae.
format article
author Sebastian Reyes-Chin-Wo
Zhiwen Wang
Xinhua Yang
Alexander Kozik
Siwaret Arikit
Chi Song
Liangfeng Xia
Lutz Froenicke
Dean O. Lavelle
María-José Truco
Rui Xia
Shilin Zhu
Chunyan Xu
Huaqin Xu
Xun Xu
Kyle Cox
Ian Korf
Blake C. Meyers
Richard W. Michelmore
author_facet Sebastian Reyes-Chin-Wo
Zhiwen Wang
Xinhua Yang
Alexander Kozik
Siwaret Arikit
Chi Song
Liangfeng Xia
Lutz Froenicke
Dean O. Lavelle
María-José Truco
Rui Xia
Shilin Zhu
Chunyan Xu
Huaqin Xu
Xun Xu
Kyle Cox
Ian Korf
Blake C. Meyers
Richard W. Michelmore
author_sort Sebastian Reyes-Chin-Wo
title Genome assembly with in vitro proximity ligation data and whole-genome triplication in lettuce
title_short Genome assembly with in vitro proximity ligation data and whole-genome triplication in lettuce
title_full Genome assembly with in vitro proximity ligation data and whole-genome triplication in lettuce
title_fullStr Genome assembly with in vitro proximity ligation data and whole-genome triplication in lettuce
title_full_unstemmed Genome assembly with in vitro proximity ligation data and whole-genome triplication in lettuce
title_sort genome assembly with in vitro proximity ligation data and whole-genome triplication in lettuce
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/823d172a538e484095f4425c36f8703c
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