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- 01GQQW3YH44P9FGEHJYQ4A2S22 classification A1.
- 01GQQW3YH44P9FGEHJYQ4A2S22 date "2022".
- 01GQQW3YH44P9FGEHJYQ4A2S22 language "eng".
- 01GQQW3YH44P9FGEHJYQ4A2S22 type journalArticle.
- 01GQQW3YH44P9FGEHJYQ4A2S22 hasPart 01GQQX31YMBA48E23W2PPMCJRB.pdf.
- 01GQQW3YH44P9FGEHJYQ4A2S22 subject "Biology and Life Sciences".
- 01GQQW3YH44P9FGEHJYQ4A2S22 doi "10.3389/fpls.2022.849476".
- 01GQQW3YH44P9FGEHJYQ4A2S22 issn "1664-462X".
- 01GQQW3YH44P9FGEHJYQ4A2S22 volume "13".
- 01GQQW3YH44P9FGEHJYQ4A2S22 abstract "We investigated the globally distributed red algal genus Pterocladiella, comprising 24 described species, many of which are economically important sources of agar and agarose. We used DNA-based species delimitation approaches, phylogenetic, and historical biogeographical analyses to uncover cryptic diversity and infer the drivers of biogeographic patterns. We delimited 43 species in Pterocladiella, of which 19 are undescribed. Our multigene time-calibrated phylogeny and ancestral area reconstruction indicated that Pterocladiella most likely originated during the Early Cretaceous in the Tethys Sea. Ancient Tethyan vicariance and long-distance dispersal have shaped current distribution patterns. The ancestor of Eastern Pacific species likely arose before the formation of the formidable Eastern Pacific Barrier-a first confirmation using molecular data in red algae. Divergences of Northeast and Southeast Pacific species have been driven by the Central American Seaway barrier, which, paradoxically, served as a dispersal pathway for Atlantic species. Both long- and short-distance dispersal scenarios are supported by genetic relationships within cosmopolitan species based on haplotype analysis. Asymmetrical distributions and the predominance of peripatry and sympatry between sister species suggest the importance of budding speciation in Pterocladiella. Our study highlights the underestimation of global diversity in these crucial components of coastal ecosystems and provides evidence for the complex evolution of current species distributions.".
- 01GQQW3YH44P9FGEHJYQ4A2S22 author F3699758-F0ED-11E1-A9DE-61C894A0A6B4.
- 01GQQW3YH44P9FGEHJYQ4A2S22 author F4D661DE-F0ED-11E1-A9DE-61C894A0A6B4.
- 01GQQW3YH44P9FGEHJYQ4A2S22 author F52C2C86-F0ED-11E1-A9DE-61C894A0A6B4.
- 01GQQW3YH44P9FGEHJYQ4A2S22 author urn:uuid:0f30b76c-276e-4bca-9de4-9fefc61fe4d1.
- 01GQQW3YH44P9FGEHJYQ4A2S22 author urn:uuid:481dccaf-7c49-4bb3-aba9-f7b5739fe1ea.
- 01GQQW3YH44P9FGEHJYQ4A2S22 author urn:uuid:986a4a10-ecd2-4b03-ae5b-637a6bdf83af.
- 01GQQW3YH44P9FGEHJYQ4A2S22 author urn:uuid:bd6a4c1c-f833-4d60-ae99-d9ad6af0e34f.
- 01GQQW3YH44P9FGEHJYQ4A2S22 author urn:uuid:be06730f-bec6-4ddd-9dca-0ba6a9e99355.
- 01GQQW3YH44P9FGEHJYQ4A2S22 author urn:uuid:e342ade5-9531-4d91-94a8-703e5da159f0.
- 01GQQW3YH44P9FGEHJYQ4A2S22 dateCreated "2023-01-26T20:25:45Z".
- 01GQQW3YH44P9FGEHJYQ4A2S22 dateModified "2024-07-09T14:39:41Z".
- 01GQQW3YH44P9FGEHJYQ4A2S22 name "Ancient Tethyan vicariance and long-distance dispersal drive global diversification and cryptic speciation in the red seaweed Pterocladiella".
- 01GQQW3YH44P9FGEHJYQ4A2S22 pagination urn:uuid:2e90bdc3-8444-4473-9a2d-50579558c4d6.
- 01GQQW3YH44P9FGEHJYQ4A2S22 sameAs LU-01GQQW3YH44P9FGEHJYQ4A2S22.
- 01GQQW3YH44P9FGEHJYQ4A2S22 sourceOrganization urn:uuid:24d6bd7a-783b-4885-bc80-dd386845c3af.
- 01GQQW3YH44P9FGEHJYQ4A2S22 type A1.