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The Cycas genome and the early evolution of seed plants

Yang Liu Orcid Logo, Sibo Wang, Linzhou Li Orcid Logo, Ting Yang, Shanshan Dong, Tong Wei, Shengdan Wu Orcid Logo, Yongbo Liu Orcid Logo, Yiqing Gong, Xiuyan Feng, Jianchao Ma, Guanxiao Chang, Jinling Huang Orcid Logo, Yong Yang, Hongli Wang, Min Liu, Yan Xu, Hongping Liang Orcid Logo, Jin Yu Orcid Logo, Yuqing Cai, Zhaowu Zhang, Yannan Fan Orcid Logo, Weixue Mu, Sunil Kumar Sahu Orcid Logo, Shuchun Liu, Xiaoan Lang, Leilei Yang, Na Li, Sadaf Habib, Yongqiong Yang, Anders J. Lindstrom Orcid Logo, Pei Liang, Bernard Goffinet Orcid Logo, Sumaira Zaman, Jill L. Wegrzyn, Dexiang Li, Jian Liu, Jie Cui Orcid Logo, Eva C. Sonnenschein Orcid Logo, Xiaobo Wang Orcid Logo, Jue Ruan Orcid Logo, Jia-Yu Xue, Zhu-Qing Shao Orcid Logo, Chi Song Orcid Logo, Guangyi Fan, Zhen Li, Liangsheng Zhang, Jianquan Liu Orcid Logo, Zhong-Jian Liu Orcid Logo, Yuannian Jiao Orcid Logo, Xiao-Quan Wang Orcid Logo, Hong Wu, Ertao Wang Orcid Logo, Michael Lisby Orcid Logo, Huanming Yang, Jian Wang, Xin Liu Orcid Logo, Xun Xu Orcid Logo, Nan Li, Pamela S. Soltis Orcid Logo, Yves Van de Peer Orcid Logo, Douglas E. Soltis Orcid Logo, Xun Gong Orcid Logo, Huan Liu Orcid Logo, Shouzhou Zhang Orcid Logo

Nature Plants, Volume: 8, Issue: 4, Pages: 389 - 401

Swansea University Author: Eva C. Sonnenschein Orcid Logo

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Abstract

Cycads represent one of the most ancient lineages of living seed plants. Identifying genomic features uniquely shared by cycads and other extant seed plants, but not non-seed-producing plants, may shed light on the origin of key innovations, as well as the early diversification of seed plants. Here,...

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ISSN: 2055-0278
Published: Springer Science and Business Media LLC 2022
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Nuclear and plastid phylogenomic analyses strongly suggest that cycads and Ginkgo form a clade sister to all other living gymnosperms, in contrast to mitochondrial data, which place cycads alone in this position. We found evidence for an ancient whole-genome duplication in the common ancestor of extant gymnosperms. The Cycas genome contains four homologues of the fitD gene family that were likely acquired via horizontal gene transfer from fungi, and these genes confer herbivore resistance in cycads. The male-specific region of the Y chromosome of C. panzhihuaensis contains a MADS-box transcription factor expressed exclusively in male cones that is similar to a system reported in Ginkgo, suggesting that a sex determination mechanism controlled by MADS-box genes may have originated in the common ancestor of cycads and Ginkgo. The C. panzhihuaensis genome provides an important new resource of broad utility for biologists.</abstract><type>Journal Article</type><journal>Nature Plants</journal><volume>8</volume><journalNumber>4</journalNumber><paginationStart>389</paginationStart><paginationEnd>401</paginationEnd><publisher>Springer Science and Business Media LLC</publisher><placeOfPublication/><isbnPrint/><isbnElectronic/><issnPrint/><issnElectronic>2055-0278</issnElectronic><keywords/><publishedDay>18</publishedDay><publishedMonth>4</publishedMonth><publishedYear>2022</publishedYear><publishedDate>2022-04-18</publishedDate><doi>10.1038/s41477-022-01129-7</doi><url/><notes/><college>COLLEGE NANME</college><department>Biosciences</department><CollegeCode>COLLEGE CODE</CollegeCode><DepartmentCode>SBI</DepartmentCode><institution>Swansea University</institution><apcterm/><funders>This study was supported by the Scientific Foundation of Urban Management Bureau of Shenzhen (No. 201916 to Yang Liu, No. 202019 to Shouzhou Zhang and No. 202105 to Y.G.), the National Key R&amp;D Program of China (No. 2019YFC1711000 to Huan Liu), the Biodiversity Survey and Assessment Project of the Ministry of Ecology and Environment, China (No. 2019HJ2096001006 to Shouzhou Zhang and Yongbo Liu), the Major Science and Technology Projects of Yunnan Province (Digitalization, development and application of biotic resource, No. 860 202002AA100007 to Huan Liu) and Shenzhen Municipal Government of China (No. JCYJ20151015162041454 to Huan Liu). Y.V.d.P. acknowledges funding from the European Research Council (ERC) under the European Union&#x2019;s Horizon 2020 research and innovation program (No. 833522) and from Ghent University (Methusalem funding, BOF.MET.2021.0005.01). Plant illustrations were drawn by S. Li, Z. Li, D. Cui and X. Zeng. We are grateful to the Orchid Conservation and Research Centre of Shenzhen for allowing us to access their computing resources. We also acknowledge T. Wan (Fairy Lake Botanical Garden) and D. Stevenson (New York Botanical Garden), who kindly commented on an earlier draft of the manuscript, and T. Takaso (University of the Ryukyus), who provided the video for swimming sperm of Cycas. The study was supported by the National Cycad Conservation Center at Fairy Lake Botanical Garden. 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spelling 2022-11-04T17:57:48.8330034 v2 61714 2022-10-31 The Cycas genome and the early evolution of seed plants f6a4027578a15ea3e6453a54b849c686 0000-0001-6959-5100 Eva C. Sonnenschein Eva C. Sonnenschein true false 2022-10-31 SBI Cycads represent one of the most ancient lineages of living seed plants. Identifying genomic features uniquely shared by cycads and other extant seed plants, but not non-seed-producing plants, may shed light on the origin of key innovations, as well as the early diversification of seed plants. Here, we report the 10.5-Gb reference genome of Cycas panzhihuaensis, complemented by the transcriptomes of 339 cycad species. Nuclear and plastid phylogenomic analyses strongly suggest that cycads and Ginkgo form a clade sister to all other living gymnosperms, in contrast to mitochondrial data, which place cycads alone in this position. We found evidence for an ancient whole-genome duplication in the common ancestor of extant gymnosperms. The Cycas genome contains four homologues of the fitD gene family that were likely acquired via horizontal gene transfer from fungi, and these genes confer herbivore resistance in cycads. The male-specific region of the Y chromosome of C. panzhihuaensis contains a MADS-box transcription factor expressed exclusively in male cones that is similar to a system reported in Ginkgo, suggesting that a sex determination mechanism controlled by MADS-box genes may have originated in the common ancestor of cycads and Ginkgo. The C. panzhihuaensis genome provides an important new resource of broad utility for biologists. Journal Article Nature Plants 8 4 389 401 Springer Science and Business Media LLC 2055-0278 18 4 2022 2022-04-18 10.1038/s41477-022-01129-7 COLLEGE NANME Biosciences COLLEGE CODE SBI Swansea University This study was supported by the Scientific Foundation of Urban Management Bureau of Shenzhen (No. 201916 to Yang Liu, No. 202019 to Shouzhou Zhang and No. 202105 to Y.G.), the National Key R&D Program of China (No. 2019YFC1711000 to Huan Liu), the Biodiversity Survey and Assessment Project of the Ministry of Ecology and Environment, China (No. 2019HJ2096001006 to Shouzhou Zhang and Yongbo Liu), the Major Science and Technology Projects of Yunnan Province (Digitalization, development and application of biotic resource, No. 860 202002AA100007 to Huan Liu) and Shenzhen Municipal Government of China (No. JCYJ20151015162041454 to Huan Liu). Y.V.d.P. acknowledges funding from the European Research Council (ERC) under the European Union’s Horizon 2020 research and innovation program (No. 833522) and from Ghent University (Methusalem funding, BOF.MET.2021.0005.01). Plant illustrations were drawn by S. Li, Z. Li, D. Cui and X. Zeng. We are grateful to the Orchid Conservation and Research Centre of Shenzhen for allowing us to access their computing resources. We also acknowledge T. Wan (Fairy Lake Botanical Garden) and D. Stevenson (New York Botanical Garden), who kindly commented on an earlier draft of the manuscript, and T. Takaso (University of the Ryukyus), who provided the video for swimming sperm of Cycas. The study was supported by the National Cycad Conservation Center at Fairy Lake Botanical Garden. This work is part of the 10KP project (https://db.cngb.org/10kp/) and was also supported by China National GeneBank (CNGB; https://www.cngb.org/). 2022-11-04T17:57:48.8330034 2022-10-31T12:54:00.3839033 Faculty of Science and Engineering School of Biosciences, Geography and Physics - Biosciences Yang Liu 0000-0002-5942-839x 1 Sibo Wang 2 Linzhou Li 0000-0003-0799-0900 3 Ting Yang 4 Shanshan Dong 5 Tong Wei 6 Shengdan Wu 0000-0003-1481-4825 7 Yongbo Liu 0000-0003-1618-8813 8 Yiqing Gong 9 Xiuyan Feng 10 Jianchao Ma 11 Guanxiao Chang 12 Jinling Huang 0000-0003-4893-4171 13 Yong Yang 14 Hongli Wang 15 Min Liu 16 Yan Xu 17 Hongping Liang 0000-0002-6139-191x 18 Jin Yu 0000-0002-1662-2862 19 Yuqing Cai 20 Zhaowu Zhang 21 Yannan Fan 0000-0003-3308-6878 22 Weixue Mu 23 Sunil Kumar Sahu 0000-0002-4742-9870 24 Shuchun Liu 25 Xiaoan Lang 26 Leilei Yang 27 Na Li 28 Sadaf Habib 29 Yongqiong Yang 30 Anders J. Lindstrom 0000-0003-0419-9136 31 Pei Liang 32 Bernard Goffinet 0000-0002-2754-3895 33 Sumaira Zaman 34 Jill L. Wegrzyn 35 Dexiang Li 36 Jian Liu 37 Jie Cui 0000-0003-4363-8672 38 Eva C. Sonnenschein 0000-0001-6959-5100 39 Xiaobo Wang 0000-0001-6754-7404 40 Jue Ruan 0000-0003-3713-3192 41 Jia-Yu Xue 42 Zhu-Qing Shao 0000-0002-0431-0669 43 Chi Song 0000-0003-3904-963x 44 Guangyi Fan 45 Zhen Li 46 Liangsheng Zhang 47 Jianquan Liu 0000-0002-4237-7418 48 Zhong-Jian Liu 0000-0003-4390-3878 49 Yuannian Jiao 0000-0002-8987-2782 50 Xiao-Quan Wang 0000-0003-3978-0828 51 Hong Wu 52 Ertao Wang 0000-0002-5178-3530 53 Michael Lisby 0000-0002-4830-5247 54 Huanming Yang 55 Jian Wang 56 Xin Liu 0000-0003-3256-2940 57 Xun Xu 0000-0002-5338-5173 58 Nan Li 59 Pamela S. Soltis 0000-0001-9310-8659 60 Yves Van de Peer 0000-0003-4327-3730 61 Douglas E. Soltis 0000-0001-8638-4137 62 Xun Gong 0000-0003-1705-6935 63 Huan Liu 0000-0003-3909-0931 64 Shouzhou Zhang 0000-0001-9070-0593 65 61714__25660__8b9bd5b37ad34609b8d79c176aa6a6c5.pdf 61714.pdf 2022-11-04T17:56:31.2761070 Output 10806839 application/pdf Version of Record true © The Author(s) 2022. This article is licensed under a Creative Commons Attribution 4.0 International License true eng http://creativecommons.org/licenses/by/4.0/
title The Cycas genome and the early evolution of seed plants
spellingShingle The Cycas genome and the early evolution of seed plants
Eva C. Sonnenschein
title_short The Cycas genome and the early evolution of seed plants
title_full The Cycas genome and the early evolution of seed plants
title_fullStr The Cycas genome and the early evolution of seed plants
title_full_unstemmed The Cycas genome and the early evolution of seed plants
title_sort The Cycas genome and the early evolution of seed plants
author_id_str_mv f6a4027578a15ea3e6453a54b849c686
author_id_fullname_str_mv f6a4027578a15ea3e6453a54b849c686_***_Eva C. Sonnenschein
author Eva C. Sonnenschein
author2 Yang Liu
Sibo Wang
Linzhou Li
Ting Yang
Shanshan Dong
Tong Wei
Shengdan Wu
Yongbo Liu
Yiqing Gong
Xiuyan Feng
Jianchao Ma
Guanxiao Chang
Jinling Huang
Yong Yang
Hongli Wang
Min Liu
Yan Xu
Hongping Liang
Jin Yu
Yuqing Cai
Zhaowu Zhang
Yannan Fan
Weixue Mu
Sunil Kumar Sahu
Shuchun Liu
Xiaoan Lang
Leilei Yang
Na Li
Sadaf Habib
Yongqiong Yang
Anders J. Lindstrom
Pei Liang
Bernard Goffinet
Sumaira Zaman
Jill L. Wegrzyn
Dexiang Li
Jian Liu
Jie Cui
Eva C. Sonnenschein
Xiaobo Wang
Jue Ruan
Jia-Yu Xue
Zhu-Qing Shao
Chi Song
Guangyi Fan
Zhen Li
Liangsheng Zhang
Jianquan Liu
Zhong-Jian Liu
Yuannian Jiao
Xiao-Quan Wang
Hong Wu
Ertao Wang
Michael Lisby
Huanming Yang
Jian Wang
Xin Liu
Xun Xu
Nan Li
Pamela S. Soltis
Yves Van de Peer
Douglas E. Soltis
Xun Gong
Huan Liu
Shouzhou Zhang
format Journal article
container_title Nature Plants
container_volume 8
container_issue 4
container_start_page 389
publishDate 2022
institution Swansea University
issn 2055-0278
doi_str_mv 10.1038/s41477-022-01129-7
publisher Springer Science and Business Media LLC
college_str Faculty of Science and Engineering
hierarchytype
hierarchy_top_id facultyofscienceandengineering
hierarchy_top_title Faculty of Science and Engineering
hierarchy_parent_id facultyofscienceandengineering
hierarchy_parent_title Faculty of Science and Engineering
department_str School of Biosciences, Geography and Physics - Biosciences{{{_:::_}}}Faculty of Science and Engineering{{{_:::_}}}School of Biosciences, Geography and Physics - Biosciences
document_store_str 1
active_str 0
description Cycads represent one of the most ancient lineages of living seed plants. Identifying genomic features uniquely shared by cycads and other extant seed plants, but not non-seed-producing plants, may shed light on the origin of key innovations, as well as the early diversification of seed plants. Here, we report the 10.5-Gb reference genome of Cycas panzhihuaensis, complemented by the transcriptomes of 339 cycad species. Nuclear and plastid phylogenomic analyses strongly suggest that cycads and Ginkgo form a clade sister to all other living gymnosperms, in contrast to mitochondrial data, which place cycads alone in this position. We found evidence for an ancient whole-genome duplication in the common ancestor of extant gymnosperms. The Cycas genome contains four homologues of the fitD gene family that were likely acquired via horizontal gene transfer from fungi, and these genes confer herbivore resistance in cycads. The male-specific region of the Y chromosome of C. panzhihuaensis contains a MADS-box transcription factor expressed exclusively in male cones that is similar to a system reported in Ginkgo, suggesting that a sex determination mechanism controlled by MADS-box genes may have originated in the common ancestor of cycads and Ginkgo. The C. panzhihuaensis genome provides an important new resource of broad utility for biologists.
published_date 2022-04-18T04:20:44Z
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