140 million years of evolutionary history without wings: Phylogeny and biogeography of cave crickets (Orthoptera: Rhaphidophoridae)

The family Rhaphidophoridae is an ancient and wingless lineage within Orthoptera that shows a worldwide distribution except Antarctica, with a high level of endemicity for each subfamily. Nevertheless, the phylogenetic relationships within the family remain poorly resolved due to its morphological u...

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Main Authors: Do-yoon Kim, Sangil Kim, Hojun Song, Seunggwan Shin
Format: Dataset
Language:unknown
Published: 1481
Subjects:
Online Access:https://zenodo.org/record/7812523
https://doi.org/10.5281/zenodo.7812523
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record_format openpolar
spelling ftzenodo:oai:zenodo.org:7812523 2023-07-02T03:30:38+02:00 140 million years of evolutionary history without wings: Phylogeny and biogeography of cave crickets (Orthoptera: Rhaphidophoridae) Do-yoon Kim Sangil Kim Hojun Song Seunggwan Shin 2024-05-01 https://zenodo.org/record/7812523 https://doi.org/10.5281/zenodo.7812523 unknown doi:10.5281/zenodo.7812522 https://zenodo.org/record/7812523 https://doi.org/10.5281/zenodo.7812523 oai:zenodo.org:7812523 info:eu-repo/semantics/openAccess https://creativecommons.org/licenses/by/4.0/legalcode info:eu-repo/semantics/other dataset 1481 ftzenodo https://doi.org/10.5281/zenodo.781252310.5281/zenodo.7812522 2023-06-13T23:03:21Z The family Rhaphidophoridae is an ancient and wingless lineage within Orthoptera that shows a worldwide distribution except Antarctica, with a high level of endemicity for each subfamily. Nevertheless, the phylogenetic relationships within the family remain poorly resolved due to its morphological uniformity and lack of diagnostic characteristics, such as wings. To clarify the systematics of Rhaphidophoridae and its biogeographic history, a molecular phylogeny of Rhaphidophoridae was reconstructed using three mitochondrial genes (COI, 12S, and 16S) and two nuclear ribosomal RNA genes (18S and 28S). We proposed the most comprehensive phylogenetic hypothesis of the family to date, including all extant subfamilies for the first time. In particular, we included the representatives of Anoplophilinae from East Asia to propose its phylogenetic placement for the first time, and we also included the members of Tropidischinae and Gammarotettiginae from the western United States. We resolved phylogenetic relationships among the subfamilies, including the sister relationship between Anoplophilinae and Gammarotettiginae, based on which we suggest new synapomorphies and resurrect Tachycines (Tachycines) coreana (Yamasaki, 1969) stat. resurr. Through biogeographic analyses based on divergence time estimation and ancestral range reconstruction, we suggested new biogeographic hypotheses that Gammarotettiginae in California originated from the Asian lineage when Asia and the Americas were connected by the Bering land bridge, and the opening of the Western interior seaway affected the division of Ceuthophilinae from Tropidischiinae in North America. We estimated that Rhaphidophoridae originated at 138 Mya across Laurasia and Gondwana, and suggested that the loss of wings in Rhaphidophoridae could be the result of adaptation to low temperatures in the Mesozoic era. Dataset Antarc* Antarctica Bering Land Bridge Zenodo
institution Open Polar
collection Zenodo
op_collection_id ftzenodo
language unknown
description The family Rhaphidophoridae is an ancient and wingless lineage within Orthoptera that shows a worldwide distribution except Antarctica, with a high level of endemicity for each subfamily. Nevertheless, the phylogenetic relationships within the family remain poorly resolved due to its morphological uniformity and lack of diagnostic characteristics, such as wings. To clarify the systematics of Rhaphidophoridae and its biogeographic history, a molecular phylogeny of Rhaphidophoridae was reconstructed using three mitochondrial genes (COI, 12S, and 16S) and two nuclear ribosomal RNA genes (18S and 28S). We proposed the most comprehensive phylogenetic hypothesis of the family to date, including all extant subfamilies for the first time. In particular, we included the representatives of Anoplophilinae from East Asia to propose its phylogenetic placement for the first time, and we also included the members of Tropidischinae and Gammarotettiginae from the western United States. We resolved phylogenetic relationships among the subfamilies, including the sister relationship between Anoplophilinae and Gammarotettiginae, based on which we suggest new synapomorphies and resurrect Tachycines (Tachycines) coreana (Yamasaki, 1969) stat. resurr. Through biogeographic analyses based on divergence time estimation and ancestral range reconstruction, we suggested new biogeographic hypotheses that Gammarotettiginae in California originated from the Asian lineage when Asia and the Americas were connected by the Bering land bridge, and the opening of the Western interior seaway affected the division of Ceuthophilinae from Tropidischiinae in North America. We estimated that Rhaphidophoridae originated at 138 Mya across Laurasia and Gondwana, and suggested that the loss of wings in Rhaphidophoridae could be the result of adaptation to low temperatures in the Mesozoic era.
format Dataset
author Do-yoon Kim
Sangil Kim
Hojun Song
Seunggwan Shin
spellingShingle Do-yoon Kim
Sangil Kim
Hojun Song
Seunggwan Shin
140 million years of evolutionary history without wings: Phylogeny and biogeography of cave crickets (Orthoptera: Rhaphidophoridae)
author_facet Do-yoon Kim
Sangil Kim
Hojun Song
Seunggwan Shin
author_sort Do-yoon Kim
title 140 million years of evolutionary history without wings: Phylogeny and biogeography of cave crickets (Orthoptera: Rhaphidophoridae)
title_short 140 million years of evolutionary history without wings: Phylogeny and biogeography of cave crickets (Orthoptera: Rhaphidophoridae)
title_full 140 million years of evolutionary history without wings: Phylogeny and biogeography of cave crickets (Orthoptera: Rhaphidophoridae)
title_fullStr 140 million years of evolutionary history without wings: Phylogeny and biogeography of cave crickets (Orthoptera: Rhaphidophoridae)
title_full_unstemmed 140 million years of evolutionary history without wings: Phylogeny and biogeography of cave crickets (Orthoptera: Rhaphidophoridae)
title_sort 140 million years of evolutionary history without wings: phylogeny and biogeography of cave crickets (orthoptera: rhaphidophoridae)
publishDate 1481
url https://zenodo.org/record/7812523
https://doi.org/10.5281/zenodo.7812523
genre Antarc*
Antarctica
Bering Land Bridge
genre_facet Antarc*
Antarctica
Bering Land Bridge
op_relation doi:10.5281/zenodo.7812522
https://zenodo.org/record/7812523
https://doi.org/10.5281/zenodo.7812523
oai:zenodo.org:7812523
op_rights info:eu-repo/semantics/openAccess
https://creativecommons.org/licenses/by/4.0/legalcode
op_doi https://doi.org/10.5281/zenodo.781252310.5281/zenodo.7812522
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