DNA transposons mediate duplications via transposition-independent and -dependent mechanisms in metazoans

Transposons are accepted as evolutionary catalysts but how they do so remains less clear. Analyzing 100 animal genomes finds that terminal inverted repeat-type transposable elements catalyze new gene structures and new genes in animals via both transposition-independent and -dependent mechanisms.

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Autores principales: Shengjun Tan, Huijing Ma, Jinbo Wang, Man Wang, Mengxia Wang, Haodong Yin, Yaqiong Zhang, Xinying Zhang, Jieyu Shen, Danyang Wang, Graham L. Banes, Zhihua Zhang, Jianmin Wu, Xun Huang, Hua Chen, Siqin Ge, Chun-Long Chen, Yong E. Zhang
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/d0c74725b7ea4be5939fc979ebf4da85
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spelling oai:doaj.org-article:d0c74725b7ea4be5939fc979ebf4da852021-12-02T16:08:13ZDNA transposons mediate duplications via transposition-independent and -dependent mechanisms in metazoans10.1038/s41467-021-24585-92041-1723https://doaj.org/article/d0c74725b7ea4be5939fc979ebf4da852021-07-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-24585-9https://doaj.org/toc/2041-1723Transposons are accepted as evolutionary catalysts but how they do so remains less clear. Analyzing 100 animal genomes finds that terminal inverted repeat-type transposable elements catalyze new gene structures and new genes in animals via both transposition-independent and -dependent mechanisms.Shengjun TanHuijing MaJinbo WangMan WangMengxia WangHaodong YinYaqiong ZhangXinying ZhangJieyu ShenDanyang WangGraham L. BanesZhihua ZhangJianmin WuXun HuangHua ChenSiqin GeChun-Long ChenYong E. ZhangNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-14 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Shengjun Tan
Huijing Ma
Jinbo Wang
Man Wang
Mengxia Wang
Haodong Yin
Yaqiong Zhang
Xinying Zhang
Jieyu Shen
Danyang Wang
Graham L. Banes
Zhihua Zhang
Jianmin Wu
Xun Huang
Hua Chen
Siqin Ge
Chun-Long Chen
Yong E. Zhang
DNA transposons mediate duplications via transposition-independent and -dependent mechanisms in metazoans
description Transposons are accepted as evolutionary catalysts but how they do so remains less clear. Analyzing 100 animal genomes finds that terminal inverted repeat-type transposable elements catalyze new gene structures and new genes in animals via both transposition-independent and -dependent mechanisms.
format article
author Shengjun Tan
Huijing Ma
Jinbo Wang
Man Wang
Mengxia Wang
Haodong Yin
Yaqiong Zhang
Xinying Zhang
Jieyu Shen
Danyang Wang
Graham L. Banes
Zhihua Zhang
Jianmin Wu
Xun Huang
Hua Chen
Siqin Ge
Chun-Long Chen
Yong E. Zhang
author_facet Shengjun Tan
Huijing Ma
Jinbo Wang
Man Wang
Mengxia Wang
Haodong Yin
Yaqiong Zhang
Xinying Zhang
Jieyu Shen
Danyang Wang
Graham L. Banes
Zhihua Zhang
Jianmin Wu
Xun Huang
Hua Chen
Siqin Ge
Chun-Long Chen
Yong E. Zhang
author_sort Shengjun Tan
title DNA transposons mediate duplications via transposition-independent and -dependent mechanisms in metazoans
title_short DNA transposons mediate duplications via transposition-independent and -dependent mechanisms in metazoans
title_full DNA transposons mediate duplications via transposition-independent and -dependent mechanisms in metazoans
title_fullStr DNA transposons mediate duplications via transposition-independent and -dependent mechanisms in metazoans
title_full_unstemmed DNA transposons mediate duplications via transposition-independent and -dependent mechanisms in metazoans
title_sort dna transposons mediate duplications via transposition-independent and -dependent mechanisms in metazoans
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/d0c74725b7ea4be5939fc979ebf4da85
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