A massive tsunami promoted gene flow and increased genetic diversity in a near threatened plant species
The magnitude and frequency of disturbances affect species diversity and spatial distributions, but the direct effects of large-scale disturbances on genetic diversity are poorly understood. On March 11, 2011, the Great Tohoku Earthquake in Japan caused a massive tsunami that resulted in substantial...
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Published in | Scientific reports Vol. 7; no. 1; pp. 10933 - 9 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
Published |
London
Nature Publishing Group UK
07.09.2017
Nature Publishing Group |
Subjects | |
Online Access | Get full text |
ISSN | 2045-2322 2045-2322 |
DOI | 10.1038/s41598-017-11270-5 |
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Abstract | The magnitude and frequency of disturbances affect species diversity and spatial distributions, but the direct effects of large-scale disturbances on genetic diversity are poorly understood. On March 11, 2011, the Great Tohoku Earthquake in Japan caused a massive tsunami that resulted in substantial alteration of community compositions. Populations of a near-threatened tidal marsh
Carex rugulosa
inhabiting brackish sandbars was also affected. We found four out of six remnant
C. rugulosa
populations along the Pacific Ocean had become completely extinct. Newly emergent post-tsunami populations, however, had higher allelic numbers than pre-tsunami populations, indicating higher genetic diversity after the tsunami. In addition, genetic differentiation (F
st
) between post-tsunami populations was significantly lower than that of pre-tsunami populations. We therefore conclude that the tsunami enhanced gene flow. Seeds of many
Carex
species persist for long periods in soil, which suggests that seed banks are important genetic resources for post-disturbance recovery of genetic diversity. When its brackish sandbar habitat is no longer subject to disturbance and changes to the land,
C. rugulosa
is outcompeted by terrestrial plant competitors and eliminated. Disturbance is a driving force for the recovery and maintenance of populations of species such as
C. rugulosa
—even after near-complete eradication. |
---|---|
AbstractList | The magnitude and frequency of disturbances affect species diversity and spatial distributions, but the direct effects of large-scale disturbances on genetic diversity are poorly understood. On March 11, 2011, the Great Tohoku Earthquake in Japan caused a massive tsunami that resulted in substantial alteration of community compositions. Populations of a near-threatened tidal marsh Carex rugulosa inhabiting brackish sandbars was also affected. We found four out of six remnant C. rugulosa populations along the Pacific Ocean had become completely extinct. Newly emergent post-tsunami populations, however, had higher allelic numbers than pre-tsunami populations, indicating higher genetic diversity after the tsunami. In addition, genetic differentiation (Fst) between post-tsunami populations was significantly lower than that of pre-tsunami populations. We therefore conclude that the tsunami enhanced gene flow. Seeds of many Carex species persist for long periods in soil, which suggests that seed banks are important genetic resources for post-disturbance recovery of genetic diversity. When its brackish sandbar habitat is no longer subject to disturbance and changes to the land, C. rugulosa is outcompeted by terrestrial plant competitors and eliminated. Disturbance is a driving force for the recovery and maintenance of populations of species such as C. rugulosa-even after near-complete eradication. The magnitude and frequency of disturbances affect species diversity and spatial distributions, but the direct effects of large-scale disturbances on genetic diversity are poorly understood. On March 11, 2011, the Great Tohoku Earthquake in Japan caused a massive tsunami that resulted in substantial alteration of community compositions. Populations of a near-threatened tidal marsh Carex rugulosa inhabiting brackish sandbars was also affected. We found four out of six remnant C. rugulosa populations along the Pacific Ocean had become completely extinct. Newly emergent post-tsunami populations, however, had higher allelic numbers than pre-tsunami populations, indicating higher genetic diversity after the tsunami. In addition, genetic differentiation (Fst) between post-tsunami populations was significantly lower than that of pre-tsunami populations. We therefore conclude that the tsunami enhanced gene flow. Seeds of many Carex species persist for long periods in soil, which suggests that seed banks are important genetic resources for post-disturbance recovery of genetic diversity. When its brackish sandbar habitat is no longer subject to disturbance and changes to the land, C. rugulosa is outcompeted by terrestrial plant competitors and eliminated. Disturbance is a driving force for the recovery and maintenance of populations of species such as C. rugulosa-even after near-complete eradication.The magnitude and frequency of disturbances affect species diversity and spatial distributions, but the direct effects of large-scale disturbances on genetic diversity are poorly understood. On March 11, 2011, the Great Tohoku Earthquake in Japan caused a massive tsunami that resulted in substantial alteration of community compositions. Populations of a near-threatened tidal marsh Carex rugulosa inhabiting brackish sandbars was also affected. We found four out of six remnant C. rugulosa populations along the Pacific Ocean had become completely extinct. Newly emergent post-tsunami populations, however, had higher allelic numbers than pre-tsunami populations, indicating higher genetic diversity after the tsunami. In addition, genetic differentiation (Fst) between post-tsunami populations was significantly lower than that of pre-tsunami populations. We therefore conclude that the tsunami enhanced gene flow. Seeds of many Carex species persist for long periods in soil, which suggests that seed banks are important genetic resources for post-disturbance recovery of genetic diversity. When its brackish sandbar habitat is no longer subject to disturbance and changes to the land, C. rugulosa is outcompeted by terrestrial plant competitors and eliminated. Disturbance is a driving force for the recovery and maintenance of populations of species such as C. rugulosa-even after near-complete eradication. The magnitude and frequency of disturbances affect species diversity and spatial distributions, but the direct effects of large-scale disturbances on genetic diversity are poorly understood. On March 11, 2011, the Great Tohoku Earthquake in Japan caused a massive tsunami that resulted in substantial alteration of community compositions. Populations of a near-threatened tidal marsh Carex rugulosa inhabiting brackish sandbars was also affected. We found four out of six remnant C. rugulosa populations along the Pacific Ocean had become completely extinct. Newly emergent post-tsunami populations, however, had higher allelic numbers than pre-tsunami populations, indicating higher genetic diversity after the tsunami. In addition, genetic differentiation (F st ) between post-tsunami populations was significantly lower than that of pre-tsunami populations. We therefore conclude that the tsunami enhanced gene flow. Seeds of many Carex species persist for long periods in soil, which suggests that seed banks are important genetic resources for post-disturbance recovery of genetic diversity. When its brackish sandbar habitat is no longer subject to disturbance and changes to the land, C. rugulosa is outcompeted by terrestrial plant competitors and eliminated. Disturbance is a driving force for the recovery and maintenance of populations of species such as C. rugulosa —even after near-complete eradication. |
ArticleNumber | 10933 |
Author | Hodoki, Yoshikuni Shimada, Masakazu Kunii, Hidenobu Ohbayashi, Kako I. Kondo, Natsuko |
Author_xml | – sequence: 1 givenname: Kako surname: Ohbayashi fullname: Ohbayashi, Kako email: kakoh@ecology.kyoto-u.ac.jp organization: Graduate School of Arts and Sciences, The University of Tokyo, Center for Ecological Research, Kyoto University – sequence: 2 givenname: Yoshikuni surname: Hodoki fullname: Hodoki, Yoshikuni organization: Department of Biology, Keio University, Center for Ecological Research, Kyoto University – sequence: 3 givenname: Natsuko surname: I. Kondo fullname: I. Kondo, Natsuko organization: Center for Environmental Biology and Ecosystem Studies, National Institute for Environmental Studies – sequence: 4 givenname: Hidenobu surname: Kunii fullname: Kunii, Hidenobu organization: Estuary Research Center, Shimane University – sequence: 5 givenname: Masakazu surname: Shimada fullname: Shimada, Masakazu organization: Graduate School of Arts and Sciences, The University of Tokyo |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/28883435$$D View this record in MEDLINE/PubMed |
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CitedBy_id | crossref_primary_10_1093_aobpla_plaa065 crossref_primary_10_1016_j_scitotenv_2020_140046 crossref_primary_10_3390_genes13112105 crossref_primary_10_1038_s41598_023_40698_1 crossref_primary_10_3389_fpls_2022_870613 crossref_primary_10_1073_pnas_1915848117 crossref_primary_10_1186_s12862_021_01853_2 crossref_primary_10_1186_s12870_021_03101_7 crossref_primary_10_1080_21664250_2021_1877916 crossref_primary_10_1038_s41598_019_54526_y |
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SubjectTerms | 45/77 631/158/672 631/158/857 Carex Plant - classification Carex Plant - genetics Carex rugulosa Earthquakes Gene Flow Genetic diversity Genetic resources Genetic Variation Humanities and Social Sciences Japan multidisciplinary Pacific Ocean Plant species Population genetics Sand bars Science Science (multidisciplinary) Seed banks Seeds Seismic activity Small mammals Spatial distribution Species diversity Threatened species Tsunamis |
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Title | A massive tsunami promoted gene flow and increased genetic diversity in a near threatened plant species |
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