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en Phylogeography and Population Genetic Analyses in the Iberian Toothcarp (Aphanius iberus Valenciennes, 1846) at Different Time Scales -
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del recurso Distribución a2026-06-25
(anteriormente2026-06-23
) en Phylogeography and Population Genetic Analyses in the Iberian Toothcarp (Aphanius iberus Valenciennes, 1846) at Different Time Scales
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| 100 | and extreme environments are susceptible to changes in dispersion, | 110 | and extreme environments are susceptible to changes in dispersion, | ||
| 101 | effective population size, and genetic structure. The Iberian | 111 | effective population size, and genetic structure. The Iberian | ||
| 102 | toothcarp Aphanius iberus is an endemic cyprinodontid of the Iberian | 112 | toothcarp Aphanius iberus is an endemic cyprinodontid of the Iberian | ||
| 103 | Peninsula restricted to brackish water of salt marshes and coastal | 113 | Peninsula restricted to brackish water of salt marshes and coastal | ||
| 104 | lagoons on the eastern Spanish Mediterranean coast. In this study, we | 114 | lagoons on the eastern Spanish Mediterranean coast. In this study, we | ||
| 105 | analyzed mitochondrial cytochrome b (cyt b) DNA and microsatellite | 115 | analyzed mitochondrial cytochrome b (cyt b) DNA and microsatellite | ||
| 106 | variation to evaluate ways in which the processes of extinction, | 116 | variation to evaluate ways in which the processes of extinction, | ||
| 107 | dispersal, and colonization of A. iberus across its geographic | 117 | dispersal, and colonization of A. iberus across its geographic | ||
| 108 | distribution have affected its population genetic structure over time | 118 | distribution have affected its population genetic structure over time | ||
| 109 | and space. The A. iberus network reconstruction indicated subtle | 119 | and space. The A. iberus network reconstruction indicated subtle | ||
| 110 | levels of phylogeographic structuring. This, combined with substantial | 120 | levels of phylogeographic structuring. This, combined with substantial | ||
| 111 | mitochondrial DNA (mtDNA) genetic diversity, suggests that Pleistocene | 121 | mitochondrial DNA (mtDNA) genetic diversity, suggests that Pleistocene | ||
| 112 | glaciations had a lesser effect on the demographic structure of its | 122 | glaciations had a lesser effect on the demographic structure of its | ||
| 113 | populations than was the case for Iberian freshwater species with a | 123 | populations than was the case for Iberian freshwater species with a | ||
| 114 | similar distribution. Haplotype network, hierarchical analysis of | 124 | similar distribution. Haplotype network, hierarchical analysis of | ||
| 115 | molecular variance, and pairwise I broken vertical bar(ST) comparisons | 125 | molecular variance, and pairwise I broken vertical bar(ST) comparisons | ||
| 116 | involving some Levantine samples showed a relatively high degree of | 126 | involving some Levantine samples showed a relatively high degree of | ||
| 117 | mtDNA differentiation, which could be explained by historical | 127 | mtDNA differentiation, which could be explained by historical | ||
| 118 | isolation of the Villena Lagoon population. Conversely, significant | 128 | isolation of the Villena Lagoon population. Conversely, significant | ||
| 119 | genetic differentiation that follows an isolation-by-distance pattern, | 129 | genetic differentiation that follows an isolation-by-distance pattern, | ||
| 120 | and a reduction in N-e though time was detected with microsatellites, | 130 | and a reduction in N-e though time was detected with microsatellites, | ||
| 121 | suggesting extensive habitat fragmentation on the Mediterranean coast | 131 | suggesting extensive habitat fragmentation on the Mediterranean coast | ||
| 122 | of the Iberian Peninsula over the past hundreds of years. At a smaller | 132 | of the Iberian Peninsula over the past hundreds of years. At a smaller | ||
| 123 | geographical scale (Mar Menor Lagoon), habitat fragmentation, probably | 133 | geographical scale (Mar Menor Lagoon), habitat fragmentation, probably | ||
| 124 | due to human activity, appears to have resulted in substantially | 134 | due to human activity, appears to have resulted in substantially | ||
| 125 | reduced migration and increased genetic drift, as shown by expanded | 135 | reduced migration and increased genetic drift, as shown by expanded | ||
| 126 | genetic differentiation of populations.", | 136 | genetic differentiation of populations.", | ||
| 127 | "notes_translated": { | 137 | "notes_translated": { | ||
| 128 | "es": "Secondary freshwater fish species inhabiting fluctuating | 138 | "es": "Secondary freshwater fish species inhabiting fluctuating | ||
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| 130 | effective population size, and genetic structure. The Iberian | 140 | effective population size, and genetic structure. The Iberian | ||
| 131 | toothcarp Aphanius iberus is an endemic cyprinodontid of the Iberian | 141 | toothcarp Aphanius iberus is an endemic cyprinodontid of the Iberian | ||
| 132 | Peninsula restricted to brackish water of salt marshes and coastal | 142 | Peninsula restricted to brackish water of salt marshes and coastal | ||
| 133 | lagoons on the eastern Spanish Mediterranean coast. In this study, we | 143 | lagoons on the eastern Spanish Mediterranean coast. In this study, we | ||
| 134 | analyzed mitochondrial cytochrome b (cyt b) DNA and microsatellite | 144 | analyzed mitochondrial cytochrome b (cyt b) DNA and microsatellite | ||
| 135 | variation to evaluate ways in which the processes of extinction, | 145 | variation to evaluate ways in which the processes of extinction, | ||
| 136 | dispersal, and colonization of A. iberus across its geographic | 146 | dispersal, and colonization of A. iberus across its geographic | ||
| 137 | distribution have affected its population genetic structure over time | 147 | distribution have affected its population genetic structure over time | ||
| 138 | and space. The A. iberus network reconstruction indicated subtle | 148 | and space. The A. iberus network reconstruction indicated subtle | ||
| 139 | levels of phylogeographic structuring. This, combined with substantial | 149 | levels of phylogeographic structuring. This, combined with substantial | ||
| 140 | mitochondrial DNA (mtDNA) genetic diversity, suggests that Pleistocene | 150 | mitochondrial DNA (mtDNA) genetic diversity, suggests that Pleistocene | ||
| 141 | glaciations had a lesser effect on the demographic structure of its | 151 | glaciations had a lesser effect on the demographic structure of its | ||
| 142 | populations than was the case for Iberian freshwater species with a | 152 | populations than was the case for Iberian freshwater species with a | ||
| 143 | similar distribution. Haplotype network, hierarchical analysis of | 153 | similar distribution. Haplotype network, hierarchical analysis of | ||
| 144 | molecular variance, and pairwise I broken vertical bar(ST) comparisons | 154 | molecular variance, and pairwise I broken vertical bar(ST) comparisons | ||
| 145 | involving some Levantine samples showed a relatively high degree of | 155 | involving some Levantine samples showed a relatively high degree of | ||
| 146 | mtDNA differentiation, which could be explained by historical | 156 | mtDNA differentiation, which could be explained by historical | ||
| 147 | isolation of the Villena Lagoon population. Conversely, significant | 157 | isolation of the Villena Lagoon population. Conversely, significant | ||
| 148 | genetic differentiation that follows an isolation-by-distance pattern, | 158 | genetic differentiation that follows an isolation-by-distance pattern, | ||
| 149 | and a reduction in N-e though time was detected with microsatellites, | 159 | and a reduction in N-e though time was detected with microsatellites, | ||
| 150 | suggesting extensive habitat fragmentation on the Mediterranean coast | 160 | suggesting extensive habitat fragmentation on the Mediterranean coast | ||
| 151 | of the Iberian Peninsula over the past hundreds of years. At a smaller | 161 | of the Iberian Peninsula over the past hundreds of years. At a smaller | ||
| 152 | geographical scale (Mar Menor Lagoon), habitat fragmentation, probably | 162 | geographical scale (Mar Menor Lagoon), habitat fragmentation, probably | ||
| 153 | due to human activity, appears to have resulted in substantially | 163 | due to human activity, appears to have resulted in substantially | ||
| 154 | reduced migration and increased genetic drift, as shown by expanded | 164 | reduced migration and increased genetic drift, as shown by expanded | ||
| 155 | genetic differentiation of populations." | 165 | genetic differentiation of populations." | ||
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