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en Fish effects on benthos and plankton in a Mediterranean salt marsh -
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del recurso Distribución HTML a2026-06-25
(anteriormente2026-06-23
) en Fish effects on benthos and plankton in a Mediterranean salt marsh
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| 91 | "notes": "Fish predation has an important role structuring benthic | 101 | "notes": "Fish predation has an important role structuring benthic | ||
| 92 | and planktonic assemblages in shallow waters. Hab\u0002itat complexity | 102 | and planktonic assemblages in shallow waters. Hab\u0002itat complexity | ||
| 93 | may mitigate the effect of fish predation, thus reducing | 103 | may mitigate the effect of fish predation, thus reducing | ||
| 94 | prey\u2013predator encounters and prey capture ability. In this | 104 | prey\u2013predator encounters and prey capture ability. In this | ||
| 95 | respect, benthic organisms may be less affected by predation than | 105 | respect, benthic organisms may be less affected by predation than | ||
| 96 | planktonic organ\u0002isms because macrophytes would increase habitat | 106 | planktonic organ\u0002isms because macrophytes would increase habitat | ||
| 97 | complexity, thus providing a physical refuge. However, certain small | 107 | complexity, thus providing a physical refuge. However, certain small | ||
| 98 | fish may move and live within vegetation, resulting in an increase in | 108 | fish may move and live within vegetation, resulting in an increase in | ||
| 99 | prey\u2013predator encounters, and so physical refuges provided by | 109 | prey\u2013predator encounters, and so physical refuges provided by | ||
| 100 | macrophytes would be less effective. To test the effects of small fish | 110 | macrophytes would be less effective. To test the effects of small fish | ||
| 101 | on aquatic invertebrates, we performed a field experiment using | 111 | on aquatic invertebrates, we performed a field experiment using | ||
| 102 | mesocosms in a Mediterranean salt marsh, using Aphanius iberus as the | 112 | mesocosms in a Mediterranean salt marsh, using Aphanius iberus as the | ||
| 103 | small fish species (b5 cm) and Ruppia cirrhosa as the dominant | 113 | small fish species (b5 cm) and Ruppia cirrhosa as the dominant | ||
| 104 | macrophyte. Al\u0002though, A. iberus preys on benthic and planktonic | 114 | macrophyte. Al\u0002though, A. iberus preys on benthic and planktonic | ||
| 105 | organisms, it has traditionally been described as a benthic species. | 115 | organisms, it has traditionally been described as a benthic species. | ||
| 106 | Hence, a stronger effect on benthos is expected if habitat complexity | 116 | Hence, a stronger effect on benthos is expected if habitat complexity | ||
| 107 | does not reduce the predation ability of this small fish. We therefore | 117 | does not reduce the predation ability of this small fish. We therefore | ||
| 108 | analyzed and compared the strength of the effects of A. iberus on both | 118 | analyzed and compared the strength of the effects of A. iberus on both | ||
| 109 | benthic and planktonic organisms. The fish was found to have stronger | 119 | benthic and planktonic organisms. The fish was found to have stronger | ||
| 110 | effects on planktonic than benthic or\u0002ganisms. The presence of A. | 120 | effects on planktonic than benthic or\u0002ganisms. The presence of A. | ||
| 111 | iberus was coincident with a decline in the abundance of large | 121 | iberus was coincident with a decline in the abundance of large | ||
| 112 | water-column in\u0002vertebrates such as gammarids and jellyfish, and | 122 | water-column in\u0002vertebrates such as gammarids and jellyfish, and | ||
| 113 | an increase in the abundance of medium-sized plankton. The total | 123 | an increase in the abundance of medium-sized plankton. The total | ||
| 114 | biomass of the benthic assemblage increased when A. iberus was | 124 | biomass of the benthic assemblage increased when A. iberus was | ||
| 115 | present. These results suggest that aquatic invertebrates of | 125 | present. These results suggest that aquatic invertebrates of | ||
| 116 | Mediterranean salt marshes may use macrophytes as refuge from small | 126 | Mediterranean salt marshes may use macrophytes as refuge from small | ||
| 117 | fish species", | 127 | fish species", | ||
| 118 | "notes_translated": { | 128 | "notes_translated": { | ||
| 119 | "es": "Fish predation has an important role structuring benthic | 129 | "es": "Fish predation has an important role structuring benthic | ||
| 120 | and planktonic assemblages in shallow waters. Hab\u0002itat complexity | 130 | and planktonic assemblages in shallow waters. Hab\u0002itat complexity | ||
| 121 | may mitigate the effect of fish predation, thus reducing | 131 | may mitigate the effect of fish predation, thus reducing | ||
| 122 | prey\u2013predator encounters and prey capture ability. In this | 132 | prey\u2013predator encounters and prey capture ability. In this | ||
| 123 | respect, benthic organisms may be less affected by predation than | 133 | respect, benthic organisms may be less affected by predation than | ||
| 124 | planktonic organ\u0002isms because macrophytes would increase habitat | 134 | planktonic organ\u0002isms because macrophytes would increase habitat | ||
| 125 | complexity, thus providing a physical refuge. However, certain small | 135 | complexity, thus providing a physical refuge. However, certain small | ||
| 126 | fish may move and live within vegetation, resulting in an increase in | 136 | fish may move and live within vegetation, resulting in an increase in | ||
| 127 | prey\u2013predator encounters, and so physical refuges provided by | 137 | prey\u2013predator encounters, and so physical refuges provided by | ||
| 128 | macrophytes would be less effective. To test the effects of small fish | 138 | macrophytes would be less effective. To test the effects of small fish | ||
| 129 | on aquatic invertebrates, we performed a field experiment using | 139 | on aquatic invertebrates, we performed a field experiment using | ||
| 130 | mesocosms in a Mediterranean salt marsh, using Aphanius iberus as the | 140 | mesocosms in a Mediterranean salt marsh, using Aphanius iberus as the | ||
| 131 | small fish species (b5 cm) and Ruppia cirrhosa as the dominant | 141 | small fish species (b5 cm) and Ruppia cirrhosa as the dominant | ||
| 132 | macrophyte. Al\u0002though, A. iberus preys on benthic and planktonic | 142 | macrophyte. Al\u0002though, A. iberus preys on benthic and planktonic | ||
| 133 | organisms, it has traditionally been described as a benthic species. | 143 | organisms, it has traditionally been described as a benthic species. | ||
| 134 | Hence, a stronger effect on benthos is expected if habitat complexity | 144 | Hence, a stronger effect on benthos is expected if habitat complexity | ||
| 135 | does not reduce the predation ability of this small fish. We therefore | 145 | does not reduce the predation ability of this small fish. We therefore | ||
| 136 | analyzed and compared the strength of the effects of A. iberus on both | 146 | analyzed and compared the strength of the effects of A. iberus on both | ||
| 137 | benthic and planktonic organisms. The fish was found to have stronger | 147 | benthic and planktonic organisms. The fish was found to have stronger | ||
| 138 | effects on planktonic than benthic or\u0002ganisms. The presence of A. | 148 | effects on planktonic than benthic or\u0002ganisms. The presence of A. | ||
| 139 | iberus was coincident with a decline in the abundance of large | 149 | iberus was coincident with a decline in the abundance of large | ||
| 140 | water-column in\u0002vertebrates such as gammarids and jellyfish, and | 150 | water-column in\u0002vertebrates such as gammarids and jellyfish, and | ||
| 141 | an increase in the abundance of medium-sized plankton. The total | 151 | an increase in the abundance of medium-sized plankton. The total | ||
| 142 | biomass of the benthic assemblage increased when A. iberus was | 152 | biomass of the benthic assemblage increased when A. iberus was | ||
| 143 | present. These results suggest that aquatic invertebrates of | 153 | present. These results suggest that aquatic invertebrates of | ||
| 144 | Mediterranean salt marshes may use macrophytes as refuge from small | 154 | Mediterranean salt marshes may use macrophytes as refuge from small | ||
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| 292 | ], | 302 | ], | ||
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