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The Euscaphis japonica genome and the evolution of malvids

Malvids is one of the largest clades of rosids, includes 58 families and exhibits remarkable morphological and ecological diversity. Here, we report a high‐quality chromosome‐level genome assembly for Euscaphis japonica, an early‐diverging species within malvids. Genome‐based phylogenetic analysis s...

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Detalles Bibliográficos
Autores principales: Sun, Wei‐Hong, Li, Zhen, Xiang, Shuang, Ni, Lin, Zhang, Diyang, Chen, De‐Qiang, Qiu, Meng‐Yuan, Zhang, Qi‐Gong, Xiao, Lin, Din, Le, Li, Yifan, Liao, Xing‐Yu, Liu, Xue‐Die, Jiang, Yu‐Ting, Zhang, Pei‐Lan, Ni, Hui, Wang, Yifan, Yue, Yi‐Xun, Wu, Xi, Din, Xiang‐Qing, Huang, Wei, Wang, Zhi‐Wen, Ma, Xiaokai, Liu, Bobin, Zou, Xiao‐Xing, Van de Peer, Yves, Liu, Zhong‐Jian, Zou, Shuang‐Quan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9298382/
https://www.ncbi.nlm.nih.gov/pubmed/34587334
http://dx.doi.org/10.1111/tpj.15518
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author Sun, Wei‐Hong
Li, Zhen
Xiang, Shuang
Ni, Lin
Zhang, Diyang
Chen, De‐Qiang
Qiu, Meng‐Yuan
Zhang, Qi‐Gong
Xiao, Lin
Din, Le
Li, Yifan
Liao, Xing‐Yu
Liu, Xue‐Die
Jiang, Yu‐Ting
Zhang, Pei‐Lan
Ni, Hui
Wang, Yifan
Yue, Yi‐Xun
Wu, Xi
Din, Xiang‐Qing
Huang, Wei
Wang, Zhi‐Wen
Ma, Xiaokai
Liu, Bobin
Zou, Xiao‐Xing
Van de Peer, Yves
Liu, Zhong‐Jian
Zou, Shuang‐Quan
author_facet Sun, Wei‐Hong
Li, Zhen
Xiang, Shuang
Ni, Lin
Zhang, Diyang
Chen, De‐Qiang
Qiu, Meng‐Yuan
Zhang, Qi‐Gong
Xiao, Lin
Din, Le
Li, Yifan
Liao, Xing‐Yu
Liu, Xue‐Die
Jiang, Yu‐Ting
Zhang, Pei‐Lan
Ni, Hui
Wang, Yifan
Yue, Yi‐Xun
Wu, Xi
Din, Xiang‐Qing
Huang, Wei
Wang, Zhi‐Wen
Ma, Xiaokai
Liu, Bobin
Zou, Xiao‐Xing
Van de Peer, Yves
Liu, Zhong‐Jian
Zou, Shuang‐Quan
author_sort Sun, Wei‐Hong
collection PubMed
description Malvids is one of the largest clades of rosids, includes 58 families and exhibits remarkable morphological and ecological diversity. Here, we report a high‐quality chromosome‐level genome assembly for Euscaphis japonica, an early‐diverging species within malvids. Genome‐based phylogenetic analysis suggests that the unstable phylogenetic position of E. japonica may result from incomplete lineage sorting and hybridization event during the diversification of the ancestral population of malvids. Euscaphis japonica experienced two polyploidization events: the ancient whole genome triplication event shared with most eudicots (commonly known as the γ event) and a more recent whole genome duplication event, unique to E. japonica. By resequencing 101 samples from 11 populations, we speculate that the temperature has led to the differentiation of the evergreen and deciduous of E. japonica and the completely different population histories of these two groups. In total, 1012 candidate positively selected genes in the evergreen were detected, some of which are involved in flower and fruit development. We found that reddening and dehiscence of the E. japonica pericarp and long fruit‐hanging time promoted the reproduction of E. japonica populations, and revealed the expression patterns of genes related to fruit reddening, dehiscence and abscission. The key genes involved in pentacyclic triterpene synthesis in E. japonica were identified, and different expression patterns of these genes may contribute to pentacyclic triterpene diversification. Our work sheds light on the evolution of E. japonica and malvids, particularly on the diversification of E. japonica and the genetic basis for their fruit dehiscence and abscission.
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spelling pubmed-92983822022-07-21 The Euscaphis japonica genome and the evolution of malvids Sun, Wei‐Hong Li, Zhen Xiang, Shuang Ni, Lin Zhang, Diyang Chen, De‐Qiang Qiu, Meng‐Yuan Zhang, Qi‐Gong Xiao, Lin Din, Le Li, Yifan Liao, Xing‐Yu Liu, Xue‐Die Jiang, Yu‐Ting Zhang, Pei‐Lan Ni, Hui Wang, Yifan Yue, Yi‐Xun Wu, Xi Din, Xiang‐Qing Huang, Wei Wang, Zhi‐Wen Ma, Xiaokai Liu, Bobin Zou, Xiao‐Xing Van de Peer, Yves Liu, Zhong‐Jian Zou, Shuang‐Quan Plant J Original Articles Malvids is one of the largest clades of rosids, includes 58 families and exhibits remarkable morphological and ecological diversity. Here, we report a high‐quality chromosome‐level genome assembly for Euscaphis japonica, an early‐diverging species within malvids. Genome‐based phylogenetic analysis suggests that the unstable phylogenetic position of E. japonica may result from incomplete lineage sorting and hybridization event during the diversification of the ancestral population of malvids. Euscaphis japonica experienced two polyploidization events: the ancient whole genome triplication event shared with most eudicots (commonly known as the γ event) and a more recent whole genome duplication event, unique to E. japonica. By resequencing 101 samples from 11 populations, we speculate that the temperature has led to the differentiation of the evergreen and deciduous of E. japonica and the completely different population histories of these two groups. In total, 1012 candidate positively selected genes in the evergreen were detected, some of which are involved in flower and fruit development. We found that reddening and dehiscence of the E. japonica pericarp and long fruit‐hanging time promoted the reproduction of E. japonica populations, and revealed the expression patterns of genes related to fruit reddening, dehiscence and abscission. The key genes involved in pentacyclic triterpene synthesis in E. japonica were identified, and different expression patterns of these genes may contribute to pentacyclic triterpene diversification. Our work sheds light on the evolution of E. japonica and malvids, particularly on the diversification of E. japonica and the genetic basis for their fruit dehiscence and abscission. John Wiley and Sons Inc. 2021-11-05 2021-12 /pmc/articles/PMC9298382/ /pubmed/34587334 http://dx.doi.org/10.1111/tpj.15518 Text en © 2021 The Authors. The Plant Journal published by Society for Experimental Biology and John Wiley & Sons Ltd. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Original Articles
Sun, Wei‐Hong
Li, Zhen
Xiang, Shuang
Ni, Lin
Zhang, Diyang
Chen, De‐Qiang
Qiu, Meng‐Yuan
Zhang, Qi‐Gong
Xiao, Lin
Din, Le
Li, Yifan
Liao, Xing‐Yu
Liu, Xue‐Die
Jiang, Yu‐Ting
Zhang, Pei‐Lan
Ni, Hui
Wang, Yifan
Yue, Yi‐Xun
Wu, Xi
Din, Xiang‐Qing
Huang, Wei
Wang, Zhi‐Wen
Ma, Xiaokai
Liu, Bobin
Zou, Xiao‐Xing
Van de Peer, Yves
Liu, Zhong‐Jian
Zou, Shuang‐Quan
The Euscaphis japonica genome and the evolution of malvids
title The Euscaphis japonica genome and the evolution of malvids
title_full The Euscaphis japonica genome and the evolution of malvids
title_fullStr The Euscaphis japonica genome and the evolution of malvids
title_full_unstemmed The Euscaphis japonica genome and the evolution of malvids
title_short The Euscaphis japonica genome and the evolution of malvids
title_sort euscaphis japonica genome and the evolution of malvids
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9298382/
https://www.ncbi.nlm.nih.gov/pubmed/34587334
http://dx.doi.org/10.1111/tpj.15518
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