The Bryophyte Phylogeny Group: A revised familial classification system based on plastid phylogenomic data
Bryophytes, a monophyletic group comprising three major lineages, diversified soon after the terrestrialization of land plants. However, their internal phylogenetic relationships remain controversial. In this study, we reconstructed the ordinal and familial phylogeny of bryophytes using the largest...
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Published in | Journal of systematics and evolution : JSE Vol. 62; no. 4; pp. 577 - 588 |
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Main Authors | , , , , , , , , , , , , , , , |
Format | Journal Article |
Language | English |
Published |
Beijing
Wiley Subscription Services, Inc
01.07.2024
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Subjects | |
Online Access | Get full text |
ISSN | 1674-4918 1759-6831 |
DOI | 10.1111/jse.13063 |
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Abstract | Bryophytes, a monophyletic group comprising three major lineages, diversified soon after the terrestrialization of land plants. However, their internal phylogenetic relationships remain controversial. In this study, we reconstructed the ordinal and familial phylogeny of bryophytes using the largest plastid data set to date, including 549 taxa that represent almost all known orders and two‐thirds of families. The strongly supported phylogenetic inference enabled us to propose in mosses seven newly segregated families, that is, Baldwiniellaceae, Calyptrochaetaceae, Ctenidiaceae, Herpetineuraceae, Isodrepaniaceae, Pseudotaxiphyllaceae, and Rozeaceae, and one reduced family, that is, Climaciaceae. We also transferred the liverwort family Calyculariaceae from Fossombroniales to Pelliales. Recent advancements in molecular phylogeny have revolutionized bryophyte classification, tending to be more fragmental. Hence, we further propose a revised familial classification system for bryophytes that includes 45 orders and 142 families in mosses, 23 orders and 85 families in liverworts, and five orders and five families in hornworts.
Bryophytes are morphologically distinct and diverse in land plants, and their internal phylogenetic relationships remain controversial. We reconstructed the ordinal and familial phylogeny of bryophytes using the largest plastome data set to date, including 549 taxa that represent almost all known orders and two‐third families. Based on the plastid genomic phylogeny presented here and the recently published systems, we further propose a revised familial classification system for bryophytes that includes seven newly segregated families and one reduced family in mosses. |
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AbstractList | Bryophytes, a monophyletic group comprising three major lineages, diversified soon after the terrestrialization of land plants. However, their internal phylogenetic relationships remain controversial. In this study, we reconstructed the ordinal and familial phylogeny of bryophytes using the largest plastid data set to date, including 549 taxa that represent almost all known orders and two‐thirds of families. The strongly supported phylogenetic inference enabled us to propose in mosses seven newly segregated families, that is, Baldwiniellaceae, Calyptrochaetaceae, Ctenidiaceae, Herpetineuraceae, Isodrepaniaceae, Pseudotaxiphyllaceae, and Rozeaceae, and one reduced family, that is, Climaciaceae. We also transferred the liverwort family Calyculariaceae from Fossombroniales to Pelliales. Recent advancements in molecular phylogeny have revolutionized bryophyte classification, tending to be more fragmental. Hence, we further propose a revised familial classification system for bryophytes that includes 45 orders and 142 families in mosses, 23 orders and 85 families in liverworts, and five orders and five families in hornworts. Bryophytes, a monophyletic group comprising three major lineages, diversified soon after the terrestrialization of land plants. However, their internal phylogenetic relationships remain controversial. In this study, we reconstructed the ordinal and familial phylogeny of bryophytes using the largest plastid data set to date, including 549 taxa that represent almost all known orders and two‐thirds of families. The strongly supported phylogenetic inference enabled us to propose in mosses seven newly segregated families, that is, Baldwiniellaceae, Calyptrochaetaceae, Ctenidiaceae, Herpetineuraceae, Isodrepaniaceae, Pseudotaxiphyllaceae, and Rozeaceae, and one reduced family, that is, Climaciaceae. We also transferred the liverwort family Calyculariaceae from Fossombroniales to Pelliales. Recent advancements in molecular phylogeny have revolutionized bryophyte classification, tending to be more fragmental. Hence, we further propose a revised familial classification system for bryophytes that includes 45 orders and 142 families in mosses, 23 orders and 85 families in liverworts, and five orders and five families in hornworts. Bryophytes are morphologically distinct and diverse in land plants, and their internal phylogenetic relationships remain controversial. We reconstructed the ordinal and familial phylogeny of bryophytes using the largest plastome data set to date, including 549 taxa that represent almost all known orders and two‐third families. Based on the plastid genomic phylogeny presented here and the recently published systems, we further propose a revised familial classification system for bryophytes that includes seven newly segregated families and one reduced family in mosses. |
Author | Wang, Qing‐Hua Yi, Zhao‐Qin Wang, Jun‐Jie Peng, Tao Li, Yun‐Feng Zhang, Li Ho, Boon‐Chuan Liu, Yang Chen, Zhi‐Duan Luo, Lian Han, Wei Yu, Ning‐Ning Jia, Yu He, Qiang Gaowa, Naren He, Xiaolan |
Author_xml | – sequence: 1 givenname: Yun‐Feng surname: Li fullname: Li, Yun‐Feng organization: University of Chinese Academy of Sciences – sequence: 2 givenname: Lian surname: Luo fullname: Luo, Lian organization: University of Chinese Academy of Sciences – sequence: 3 givenname: Yang surname: Liu fullname: Liu, Yang organization: State Key Laboratory of Agricultural Genomics, BGI‐Shenzhen – sequence: 4 givenname: Qiang surname: He fullname: He, Qiang organization: China National Botanical Garden – sequence: 5 givenname: Ning‐Ning surname: Yu fullname: Yu, Ning‐Ning organization: China National Botanical Garden – sequence: 6 givenname: Naren surname: Gaowa fullname: Gaowa, Naren organization: University of Chinese Academy of Sciences – sequence: 7 givenname: Zhao‐Qin surname: Yi fullname: Yi, Zhao‐Qin organization: Henan Normal University – sequence: 8 givenname: Jun‐Jie surname: Wang fullname: Wang, Jun‐Jie organization: Jiyang College of Zhejiang A&F University – sequence: 9 givenname: Wei surname: Han fullname: Han, Wei organization: Sanming University – sequence: 10 givenname: Tao surname: Peng fullname: Peng, Tao organization: Guizhou Normal University – sequence: 11 givenname: Boon‐Chuan surname: Ho fullname: Ho, Boon‐Chuan organization: Singapore Botanic Gardens – sequence: 12 givenname: Xiaolan surname: He fullname: He, Xiaolan organization: University of Helsinki – sequence: 13 givenname: Li surname: Zhang fullname: Zhang, Li organization: Shenzhen & Chinese Academy of Sciences – sequence: 14 givenname: Zhi‐Duan orcidid: 0000-0002-7716-4834 surname: Chen fullname: Chen, Zhi‐Duan organization: China National Botanical Garden – sequence: 15 givenname: Yu orcidid: 0000-0001-8897-3031 surname: Jia fullname: Jia, Yu email: yjia@ibcas.ac.cn organization: China National Botanical Garden – sequence: 16 givenname: Qing‐Hua orcidid: 0000-0003-1527-535X surname: Wang fullname: Wang, Qing‐Hua email: qinghua@ibcas.ac.cn organization: China National Botanical Garden |
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Snippet | Bryophytes, a monophyletic group comprising three major lineages, diversified soon after the terrestrialization of land plants. However, their internal... |
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SubjectTerms | Bryophyta Bryophytes Classification hornworts Hypnanae liverworts Mosses Phylogeny plastome taxonomy |
Title | The Bryophyte Phylogeny Group: A revised familial classification system based on plastid phylogenomic data |
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