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En el instante 23 de junio de 2026, 16:11:51 UTC,
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Modificado el valor del campo
spatial_coverage
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en The effects of Aphanius iberus predation on an aquatic community: diel changes and the role of vegetation
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| 94 | "notes": "The predation effects of a cyprinodontid fish (Aphanius | 94 | "notes": "The predation effects of a cyprinodontid fish (Aphanius | ||
| 95 | iberus) on the aquatic invertebrate community structure of a | 95 | iberus) on the aquatic invertebrate community structure of a | ||
| 96 | Mediterranean shallow system with vegetation were investigated. Field | 96 | Mediterranean shallow system with vegetation were investigated. Field | ||
| 97 | studies were performed in March and July of 2009 in a pond adjacent to | 97 | studies were performed in March and July of 2009 in a pond adjacent to | ||
| 98 | the salterns of San Pedro del Pinatar (Murcia, Spain) to evaluate two | 98 | the salterns of San Pedro del Pinatar (Murcia, Spain) to evaluate two | ||
| 99 | distinct settings of A. iberus population dynamics. In March, the A. | 99 | distinct settings of A. iberus population dynamics. In March, the A. | ||
| 100 | iberus population had a low density, mainly dominated by large fish, | 100 | iberus population had a low density, mainly dominated by large fish, | ||
| 101 | whereas in July, the population had a higher density, mainly dominated | 101 | whereas in July, the population had a higher density, mainly dominated | ||
| 102 | by small, young-of\u0002the-year fish. To analyse the fish, vegetation | 102 | by small, young-of\u0002the-year fish. To analyse the fish, vegetation | ||
| 103 | and possible diel effects on the invertebrate community, we compared | 103 | and possible diel effects on the invertebrate community, we compared | ||
| 104 | the aquatic invertebrate body size distribution (biomass size spectra) | 104 | the aquatic invertebrate body size distribution (biomass size spectra) | ||
| 105 | found under the following conditions: 1) dur\u0002ing different | 105 | found under the following conditions: 1) dur\u0002ing different | ||
| 106 | seasons with different fish population structures to include possible | 106 | seasons with different fish population structures to include possible | ||
| 107 | ontogenic shifts, 2) in vegetated and non-vegetated areas to include | 107 | ontogenic shifts, 2) in vegetated and non-vegetated areas to include | ||
| 108 | sites with different resource availability, and 3) under day and night | 108 | sites with different resource availability, and 3) under day and night | ||
| 109 | conditions to investigate possible diel cycles. We hypothesise that 1) | 109 | conditions to investigate possible diel cycles. We hypothesise that 1) | ||
| 110 | because the main predator (A. iberus) has a high prefer\u0002ence for | 110 | because the main predator (A. iberus) has a high prefer\u0002ence for | ||
| 111 | vegetated areas and is expected to show a reduced mobility out of | 111 | vegetated areas and is expected to show a reduced mobility out of | ||
| 112 | these areas, no diel differences in the aquatic invertebrate community | 112 | these areas, no diel differences in the aquatic invertebrate community | ||
| 113 | structure would be apparent; 2) differences in the aquatic | 113 | structure would be apparent; 2) differences in the aquatic | ||
| 114 | invertebrate size spectra would be found when comparing the | 114 | invertebrate size spectra would be found when comparing the | ||
| 115 | non-vegetated area to the vegetated area (an area with higher resource | 115 | non-vegetated area to the vegetated area (an area with higher resource | ||
| 116 | avail\u0002ability but also higher predation pressure); and 3) | 116 | avail\u0002ability but also higher predation pressure); and 3) | ||
| 117 | differences in the aquatic invertebrate size spectra would be apparent | 117 | differences in the aquatic invertebrate size spectra would be apparent | ||
| 118 | when comparing different seasons due to an ontogenic shift in the A. | 118 | when comparing different seasons due to an ontogenic shift in the A. | ||
| 119 | iberus diet. Our results showed that in the vegetated areas, where | 119 | iberus diet. Our results showed that in the vegetated areas, where | ||
| 120 | fish were much more abundant, the assemblages of aquatic invertebrates | 120 | fish were much more abundant, the assemblages of aquatic invertebrates | ||
| 121 | had a char\u0002acteristic size spectrum, showing a higher size | 121 | had a char\u0002acteristic size spectrum, showing a higher size | ||
| 122 | diversity and a higher total biomass than the assemblages observed in | 122 | diversity and a higher total biomass than the assemblages observed in | ||
| 123 | the non-vegetated areas. Moreover, the observed differences were not | 123 | the non-vegetated areas. Moreover, the observed differences were not | ||
| 124 | affected by diel changes because none of the analysed parameters | 124 | affected by diel changes because none of the analysed parameters | ||
| 125 | showed significant differences between the day and night samplings.", | 125 | showed significant differences between the day and night samplings.", | ||
| 126 | "notes_translated": { | 126 | "notes_translated": { | ||
| 127 | "es": "The predation effects of a cyprinodontid fish (Aphanius | 127 | "es": "The predation effects of a cyprinodontid fish (Aphanius | ||
| 128 | iberus) on the aquatic invertebrate community structure of a | 128 | iberus) on the aquatic invertebrate community structure of a | ||
| 129 | Mediterranean shallow system with vegetation were investigated. Field | 129 | Mediterranean shallow system with vegetation were investigated. Field | ||
| 130 | studies were performed in March and July of 2009 in a pond adjacent to | 130 | studies were performed in March and July of 2009 in a pond adjacent to | ||
| 131 | the salterns of San Pedro del Pinatar (Murcia, Spain) to evaluate two | 131 | the salterns of San Pedro del Pinatar (Murcia, Spain) to evaluate two | ||
| 132 | distinct settings of A. iberus population dynamics. In March, the A. | 132 | distinct settings of A. iberus population dynamics. In March, the A. | ||
| 133 | iberus population had a low density, mainly dominated by large fish, | 133 | iberus population had a low density, mainly dominated by large fish, | ||
| 134 | whereas in July, the population had a higher density, mainly dominated | 134 | whereas in July, the population had a higher density, mainly dominated | ||
| 135 | by small, young-of\u0002the-year fish. To analyse the fish, vegetation | 135 | by small, young-of\u0002the-year fish. To analyse the fish, vegetation | ||
| 136 | and possible diel effects on the invertebrate community, we compared | 136 | and possible diel effects on the invertebrate community, we compared | ||
| 137 | the aquatic invertebrate body size distribution (biomass size spectra) | 137 | the aquatic invertebrate body size distribution (biomass size spectra) | ||
| 138 | found under the following conditions: 1) dur\u0002ing different | 138 | found under the following conditions: 1) dur\u0002ing different | ||
| 139 | seasons with different fish population structures to include possible | 139 | seasons with different fish population structures to include possible | ||
| 140 | ontogenic shifts, 2) in vegetated and non-vegetated areas to include | 140 | ontogenic shifts, 2) in vegetated and non-vegetated areas to include | ||
| 141 | sites with different resource availability, and 3) under day and night | 141 | sites with different resource availability, and 3) under day and night | ||
| 142 | conditions to investigate possible diel cycles. We hypothesise that 1) | 142 | conditions to investigate possible diel cycles. We hypothesise that 1) | ||
| 143 | because the main predator (A. iberus) has a high prefer\u0002ence for | 143 | because the main predator (A. iberus) has a high prefer\u0002ence for | ||
| 144 | vegetated areas and is expected to show a reduced mobility out of | 144 | vegetated areas and is expected to show a reduced mobility out of | ||
| 145 | these areas, no diel differences in the aquatic invertebrate community | 145 | these areas, no diel differences in the aquatic invertebrate community | ||
| 146 | structure would be apparent; 2) differences in the aquatic | 146 | structure would be apparent; 2) differences in the aquatic | ||
| 147 | invertebrate size spectra would be found when comparing the | 147 | invertebrate size spectra would be found when comparing the | ||
| 148 | non-vegetated area to the vegetated area (an area with higher resource | 148 | non-vegetated area to the vegetated area (an area with higher resource | ||
| 149 | avail\u0002ability but also higher predation pressure); and 3) | 149 | avail\u0002ability but also higher predation pressure); and 3) | ||
| 150 | differences in the aquatic invertebrate size spectra would be apparent | 150 | differences in the aquatic invertebrate size spectra would be apparent | ||
| 151 | when comparing different seasons due to an ontogenic shift in the A. | 151 | when comparing different seasons due to an ontogenic shift in the A. | ||
| 152 | iberus diet. Our results showed that in the vegetated areas, where | 152 | iberus diet. Our results showed that in the vegetated areas, where | ||
| 153 | fish were much more abundant, the assemblages of aquatic invertebrates | 153 | fish were much more abundant, the assemblages of aquatic invertebrates | ||
| 154 | had a char\u0002acteristic size spectrum, showing a higher size | 154 | had a char\u0002acteristic size spectrum, showing a higher size | ||
| 155 | diversity and a higher total biomass than the assemblages observed in | 155 | diversity and a higher total biomass than the assemblages observed in | ||
| 156 | the non-vegetated areas. Moreover, the observed differences were not | 156 | the non-vegetated areas. Moreover, the observed differences were not | ||
| 157 | affected by diel changes because none of the analysed parameters | 157 | affected by diel changes because none of the analysed parameters | ||
| 158 | showed significant differences between the day and night samplings." | 158 | showed significant differences between the day and night samplings." | ||
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