DNA methylation is reconfigured at the onset of reproduction in rice shoot apical meristem

The shoot apical meristem of flowering plants transitions from forming leaves to floral organs. Here Higo et al. show that DNA methylation of many transposons that are hypermethylated in gametes is established in the SAM before flowering, suggesting it protects against harmful transposition long bef...

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Autores principales: Asuka Higo, Noriko Saihara, Fumihito Miura, Yoko Higashi, Megumi Yamada, Shojiro Tamaki, Tasuku Ito, Yoshiaki Tarutani, Tomoaki Sakamoto, Masayuki Fujiwara, Tetsuya Kurata, Yoichiro Fukao, Satoru Moritoh, Rie Terada, Toshinori Kinoshita, Takashi Ito, Tetsuji Kakutani, Ko Shimamoto, Hiroyuki Tsuji
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Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/56f03aaed58a4d3d87ddb4beed4d33ff
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spelling oai:doaj.org-article:56f03aaed58a4d3d87ddb4beed4d33ff2021-12-02T19:06:29ZDNA methylation is reconfigured at the onset of reproduction in rice shoot apical meristem10.1038/s41467-020-17963-22041-1723https://doaj.org/article/56f03aaed58a4d3d87ddb4beed4d33ff2020-08-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-17963-2https://doaj.org/toc/2041-1723The shoot apical meristem of flowering plants transitions from forming leaves to floral organs. Here Higo et al. show that DNA methylation of many transposons that are hypermethylated in gametes is established in the SAM before flowering, suggesting it protects against harmful transposition long before germ cell differentiation.Asuka HigoNoriko SaiharaFumihito MiuraYoko HigashiMegumi YamadaShojiro TamakiTasuku ItoYoshiaki TarutaniTomoaki SakamotoMasayuki FujiwaraTetsuya KurataYoichiro FukaoSatoru MoritohRie TeradaToshinori KinoshitaTakashi ItoTetsuji KakutaniKo ShimamotoHiroyuki TsujiNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-12 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Asuka Higo
Noriko Saihara
Fumihito Miura
Yoko Higashi
Megumi Yamada
Shojiro Tamaki
Tasuku Ito
Yoshiaki Tarutani
Tomoaki Sakamoto
Masayuki Fujiwara
Tetsuya Kurata
Yoichiro Fukao
Satoru Moritoh
Rie Terada
Toshinori Kinoshita
Takashi Ito
Tetsuji Kakutani
Ko Shimamoto
Hiroyuki Tsuji
DNA methylation is reconfigured at the onset of reproduction in rice shoot apical meristem
description The shoot apical meristem of flowering plants transitions from forming leaves to floral organs. Here Higo et al. show that DNA methylation of many transposons that are hypermethylated in gametes is established in the SAM before flowering, suggesting it protects against harmful transposition long before germ cell differentiation.
format article
author Asuka Higo
Noriko Saihara
Fumihito Miura
Yoko Higashi
Megumi Yamada
Shojiro Tamaki
Tasuku Ito
Yoshiaki Tarutani
Tomoaki Sakamoto
Masayuki Fujiwara
Tetsuya Kurata
Yoichiro Fukao
Satoru Moritoh
Rie Terada
Toshinori Kinoshita
Takashi Ito
Tetsuji Kakutani
Ko Shimamoto
Hiroyuki Tsuji
author_facet Asuka Higo
Noriko Saihara
Fumihito Miura
Yoko Higashi
Megumi Yamada
Shojiro Tamaki
Tasuku Ito
Yoshiaki Tarutani
Tomoaki Sakamoto
Masayuki Fujiwara
Tetsuya Kurata
Yoichiro Fukao
Satoru Moritoh
Rie Terada
Toshinori Kinoshita
Takashi Ito
Tetsuji Kakutani
Ko Shimamoto
Hiroyuki Tsuji
author_sort Asuka Higo
title DNA methylation is reconfigured at the onset of reproduction in rice shoot apical meristem
title_short DNA methylation is reconfigured at the onset of reproduction in rice shoot apical meristem
title_full DNA methylation is reconfigured at the onset of reproduction in rice shoot apical meristem
title_fullStr DNA methylation is reconfigured at the onset of reproduction in rice shoot apical meristem
title_full_unstemmed DNA methylation is reconfigured at the onset of reproduction in rice shoot apical meristem
title_sort dna methylation is reconfigured at the onset of reproduction in rice shoot apical meristem
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/56f03aaed58a4d3d87ddb4beed4d33ff
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