Coconut genome assembly enables evolutionary analysis of palms and highlights signaling pathways involved in salt tolerance

Yaodong Yang et al. report a chromosome-scale genome assembly of the coconut and transcriptome analysis of coconut leaves. Their analysis reveals important steps along the evolutionary trajectory of palms and identifies genes that may play a key role in tolerance to salt stress.

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Autores principales: Yaodong Yang, Stéphanie Bocs, Haikuo Fan, Alix Armero, Luc Baudouin, Pengwei Xu, Junyang Xu, Dominique This, Chantal Hamelin, Amjad Iqbal, Rashad Qadri, Lixia Zhou, Jing Li, Yi Wu, Zilong Ma, Auguste Emmanuel Issali, Ronan Rivallan, Na Liu, Wei Xia, Ming Peng, Yong Xiao
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/32bff57fd9414e5199d808642a7af3ec
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spelling oai:doaj.org-article:32bff57fd9414e5199d808642a7af3ec2021-12-02T13:51:04ZCoconut genome assembly enables evolutionary analysis of palms and highlights signaling pathways involved in salt tolerance10.1038/s42003-020-01593-x2399-3642https://doaj.org/article/32bff57fd9414e5199d808642a7af3ec2021-01-01T00:00:00Zhttps://doi.org/10.1038/s42003-020-01593-xhttps://doaj.org/toc/2399-3642Yaodong Yang et al. report a chromosome-scale genome assembly of the coconut and transcriptome analysis of coconut leaves. Their analysis reveals important steps along the evolutionary trajectory of palms and identifies genes that may play a key role in tolerance to salt stress.Yaodong YangStéphanie BocsHaikuo FanAlix ArmeroLuc BaudouinPengwei XuJunyang XuDominique ThisChantal HamelinAmjad IqbalRashad QadriLixia ZhouJing LiYi WuZilong MaAuguste Emmanuel IssaliRonan RivallanNa LiuWei XiaMing PengYong XiaoNature PortfolioarticleBiology (General)QH301-705.5ENCommunications Biology, Vol 4, Iss 1, Pp 1-14 (2021)
institution DOAJ
collection DOAJ
language EN
topic Biology (General)
QH301-705.5
spellingShingle Biology (General)
QH301-705.5
Yaodong Yang
Stéphanie Bocs
Haikuo Fan
Alix Armero
Luc Baudouin
Pengwei Xu
Junyang Xu
Dominique This
Chantal Hamelin
Amjad Iqbal
Rashad Qadri
Lixia Zhou
Jing Li
Yi Wu
Zilong Ma
Auguste Emmanuel Issali
Ronan Rivallan
Na Liu
Wei Xia
Ming Peng
Yong Xiao
Coconut genome assembly enables evolutionary analysis of palms and highlights signaling pathways involved in salt tolerance
description Yaodong Yang et al. report a chromosome-scale genome assembly of the coconut and transcriptome analysis of coconut leaves. Their analysis reveals important steps along the evolutionary trajectory of palms and identifies genes that may play a key role in tolerance to salt stress.
format article
author Yaodong Yang
Stéphanie Bocs
Haikuo Fan
Alix Armero
Luc Baudouin
Pengwei Xu
Junyang Xu
Dominique This
Chantal Hamelin
Amjad Iqbal
Rashad Qadri
Lixia Zhou
Jing Li
Yi Wu
Zilong Ma
Auguste Emmanuel Issali
Ronan Rivallan
Na Liu
Wei Xia
Ming Peng
Yong Xiao
author_facet Yaodong Yang
Stéphanie Bocs
Haikuo Fan
Alix Armero
Luc Baudouin
Pengwei Xu
Junyang Xu
Dominique This
Chantal Hamelin
Amjad Iqbal
Rashad Qadri
Lixia Zhou
Jing Li
Yi Wu
Zilong Ma
Auguste Emmanuel Issali
Ronan Rivallan
Na Liu
Wei Xia
Ming Peng
Yong Xiao
author_sort Yaodong Yang
title Coconut genome assembly enables evolutionary analysis of palms and highlights signaling pathways involved in salt tolerance
title_short Coconut genome assembly enables evolutionary analysis of palms and highlights signaling pathways involved in salt tolerance
title_full Coconut genome assembly enables evolutionary analysis of palms and highlights signaling pathways involved in salt tolerance
title_fullStr Coconut genome assembly enables evolutionary analysis of palms and highlights signaling pathways involved in salt tolerance
title_full_unstemmed Coconut genome assembly enables evolutionary analysis of palms and highlights signaling pathways involved in salt tolerance
title_sort coconut genome assembly enables evolutionary analysis of palms and highlights signaling pathways involved in salt tolerance
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/32bff57fd9414e5199d808642a7af3ec
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