A time-calibrated mitogenomic phylogeny suggests that Korean Hyalessa fuscata is a bridge between Chinese and Japanese H. maculaticollis
The cicada species, Hyalessa fuscata and H. maculaticollis (Hemiptera: Cicadidae), share numerous morphological characters, and their status as distinct species remains controversial. We reconstructed a phylogeny based on two new mitogenomes of H. fuscata from Korea and H. maculaticollis from Japan,...
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Published in | Journal of genetics Vol. 102; no. 1 |
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Main Authors | , , , , , , |
Format | Journal Article |
Language | English |
Published |
New Delhi
Springer India
01.06.2023
Springer |
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Abstract | The cicada species,
Hyalessa fuscata
and
H. maculaticollis
(Hemiptera: Cicadidae), share numerous morphological characters, and their status as distinct species remains controversial. We reconstructed a phylogeny based on two new mitogenomes of
H. fuscata
from Korea and
H. maculaticollis
from Japan, in combination with GenBank sequences of
H. maculaticollis
from China and Japan, and other closely related cicada species. Maximum likelihood and Bayesian inference phylogenies showed that
H. fuscata
from Korea is more closely related to
H. maculaticollis
from China than either is to
H. maculaticollis
from Japan. The time-calibrated Bayesian evolutionary analysis by sampling trees (BEAST) phylogeny indicated that the mainland and insular forms diverged approximately 1.7–2.6 million years ago. This coincides with the formation of the East China Sea land bridge between East Asia and the Japanese archipelago, which would provide a dispersal corridor for
Hyalessa
from the mainland via the Korean peninsula southeastward to Japan. East Asian
H. fuscata
is a geographic variant that may be considered synonymous with
H. maculaticollis
. |
---|---|
AbstractList | The cicada species, Hyalessa fuscata and H. maculaticollis (Hemiptera: Cicadidae), share numerous morphological characters, and their status as distinct species remains controversial. We reconstructed a phylogeny based on two new mitogenomes of H. fuscata from Korea and H. maculaticollis from Japan, in combination with GenBank sequences of H. maculaticollis from China and Japan, and other closely related cicada species. Maximum likelihood and Bayesian inference phylogenies showed that H. fuscata from Korea is more closely related to H. maculaticollis from China than either is to H. maculaticollis from Japan. The time-calibrated Bayesian evolutionary analysis by sampling trees (BEAST) phylogeny indicated that the mainland and insular forms diverged approximately 1.7-2.6 million years ago. This coincides with the formation of the East China Sea land bridge between East Asia and the Japanese archipelago, which would provide a dispersal corridor for Hyalessa from the mainland via the Korean peninsula southeastward to Japan. East Asian H. fuscata is a geographic variant that may be considered synonymous with H. maculaticollis. The cicada species, Hyalessa fuscata and H. maculaticollis (Hemiptera: Cicadidae), share numerous morphological characters, and their status as distinct species remains controversial. We reconstructed a phylogeny based on two new mitogenomes of H. fuscata from Korea and H. maculaticollis from Japan, in combination with GenBank sequences of H. maculaticollis from China and Japan, and other closely related cicada species. Maximum likelihood and Bayesian inference phylogenies showed that H. fuscata from Korea is more closely related to H. maculaticollis from China than either is to H. maculaticollis from Japan. The time-calibrated Bayesian evolutionary analysis by sampling trees (BEAST) phylogeny indicated that the mainland and insular forms diverged approximately 1.7–2.6 million years ago. This coincides with the formation of the East China Sea land bridge between East Asia and the Japanese archipelago, which would provide a dispersal corridor for Hyalessa from the mainland via the Korean peninsula southeastward to Japan. East Asian H. fuscata is a geographic variant that may be considered synonymous with H. maculaticollis . The cicada species, and . (Hemiptera: Cicadidae), share numerous morphological characters, and their status as distinct species remains controversial. We reconstructed a phylogeny based on two new mitogenomes of . from Korea and . from Japan, in combination with GenBank sequences of . from China and Japan, and other closely related cicada species. Maximum likelihood and Bayesian inference phylogenies showed that . from Korea is more closely related to . from China than either is to . from Japan. The time-calibrated Bayesian evolutionary analysis by sampling trees (BEAST) phylogeny indicated that the mainland and insular forms diverged approximately 1.7-2.6 million years ago. This coincides with the formation of the East China Sea land bridge between East Asia and the Japanese archipelago, which would provide a dispersal corridor for from the mainland via the Korean peninsula southeastward to Japan. East Asian . is a geographic variant that may be considered synonymous with . . |
ArticleNumber | 9 |
Audience | Academic |
Author | Bae, Yoonhyuk Pham, Thai Hong La, Huyen Thi Kong, Sungsik Jang, Yikweon Nguyen, Hoa Quynh Ho, Phuong-Thao |
Author_xml | – sequence: 1 givenname: Hoa Quynh orcidid: 0000-0002-9157-1647 surname: Nguyen fullname: Nguyen, Hoa Quynh organization: Ewha Womans University, Institute of Chemistry, Vietnam Academy of Science and Technology, Vietnam National Museum of Nature, Vietnam Academy of Science and Technology, Graduate School of Science and Technology, Vietnam Academy of Science and Technology – sequence: 2 givenname: Phuong-Thao surname: Ho fullname: Ho, Phuong-Thao organization: Department of Biology, Ho Chi Minh University of Education – sequence: 3 givenname: Sungsik surname: Kong fullname: Kong, Sungsik organization: Department of Evolution, Ecology, and Organismal Biology, The Ohio State University – sequence: 4 givenname: Yoonhyuk surname: Bae fullname: Bae, Yoonhyuk organization: Department of Life Sciences and Division of Ecoscience, Ewha Womans University – sequence: 5 givenname: Thai Hong surname: Pham fullname: Pham, Thai Hong organization: Vietnam National Museum of Nature, Vietnam Academy of Science and Technology, Graduate School of Science and Technology, Vietnam Academy of Science and Technology, Mientrung Institute for Scientific Research, Vietnam Academy of Science and Technology – sequence: 6 givenname: Huyen Thi surname: La fullname: La, Huyen Thi organization: Graduate School of Science and Technology, Vietnam Academy of Science and Technology, Institute of Biotechnology, Vietnam Academy of Science and Technology – sequence: 7 givenname: Yikweon orcidid: 0000-0002-7213-7319 surname: Jang fullname: Jang, Yikweon email: jangy@ewha.ac.kr organization: Ewha Womans University, Department of Life Sciences and Division of Ecoscience, Ewha Womans University |
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Snippet | The cicada species,
Hyalessa fuscata
and
H. maculaticollis
(Hemiptera: Cicadidae), share numerous morphological characters, and their status as distinct... The cicada species, and . (Hemiptera: Cicadidae), share numerous morphological characters, and their status as distinct species remains controversial. We... The cicada species, Hyalessa fuscata and H. maculaticollis (Hemiptera: Cicadidae), share numerous morphological characters, and their status as distinct... |
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SubjectTerms | Analysis Animal Genetics and Genomics Animals Bayes Theorem Biomedical and Life Sciences Evolutionary Biology Hemiptera - genetics Life Sciences Microbial Genetics and Genomics Phylogeny Plant Genetics and Genomics Republic of Korea Research Article |
Title | A time-calibrated mitogenomic phylogeny suggests that Korean Hyalessa fuscata is a bridge between Chinese and Japanese H. maculaticollis |
URI | https://link.springer.com/article/10.1007/s12041-022-01405-7 https://www.ncbi.nlm.nih.gov/pubmed/36722212 |
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