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En el instante 23 de junio de 2026, 15:58:37 UTC,
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spatial_coverage
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en Do roads act as a barrier to gene flow of subterranean small mammals? A case study with Ctenomys minutus.
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| 82 | "notes": "Road-barrier effects can lead to population isolation, | 82 | "notes": "Road-barrier effects can lead to population isolation, | ||
| 83 | with consequent negative outcomes for individuals and populations. | 83 | with consequent negative outcomes for individuals and populations. | ||
| 84 | Small mammals have been identified as particularly vulnerable to | 84 | Small mammals have been identified as particularly vulnerable to | ||
| 85 | barrier effects, yet few studies have focused on subterranean species. | 85 | barrier effects, yet few studies have focused on subterranean species. | ||
| 86 | Given the burrowing habit of these species, we hypothesized that roads | 86 | Given the burrowing habit of these species, we hypothesized that roads | ||
| 87 | block their movement and therefore the gene flow between roadside | 87 | block their movement and therefore the gene flow between roadside | ||
| 88 | populations. The tiny tuco-tuco (Ctenomys minutus), a small | 88 | populations. The tiny tuco-tuco (Ctenomys minutus), a small | ||
| 89 | subterranean rodent that inhabits the coastal plains of southern | 89 | subterranean rodent that inhabits the coastal plains of southern | ||
| 90 | Brazil, was used as a model species to test this hypothesis. We used | 90 | Brazil, was used as a model species to test this hypothesis. We used | ||
| 91 | 14 microsatellites to genotype 80 individuals from four colonies (n = | 91 | 14 microsatellites to genotype 80 individuals from four colonies (n = | ||
| 92 | 20 per colony). We compared the population differentiation (FST, | 92 | 20 per colony). We compared the population differentiation (FST, | ||
| 93 | G\u2033ST and DEST) and population structuring (STRUCTURE and | 93 | G\u2033ST and DEST) and population structuring (STRUCTURE and | ||
| 94 | GENELAND, and discriminant analysis of principal components) of two | 94 | GENELAND, and discriminant analysis of principal components) of two | ||
| 95 | colony pairs, one pair divided by a road, and the other with no road | 95 | colony pairs, one pair divided by a road, and the other with no road | ||
| 96 | or other potential barrier between the colonies (control). The results | 96 | or other potential barrier between the colonies (control). The results | ||
| 97 | indicated higher genetic differentiation and structuring between the | 97 | indicated higher genetic differentiation and structuring between the | ||
| 98 | roadside colonies than in the control sites, although less evident | 98 | roadside colonies than in the control sites, although less evident | ||
| 99 | than initially predicted. We concluded that the road reduced but did | 99 | than initially predicted. We concluded that the road reduced but did | ||
| 100 | not halt the gene flow of C. minutus. Nevertheless, in view of the | 100 | not halt the gene flow of C. minutus. Nevertheless, in view of the | ||
| 101 | rapid economic development of the region, measures to ensure long-term | 101 | rapid economic development of the region, measures to ensure long-term | ||
| 102 | gene flow, i.e., installation or retrofitting of crossing structures, | 102 | gene flow, i.e., installation or retrofitting of crossing structures, | ||
| 103 | should be considered. This study complements previous analyses of | 103 | should be considered. This study complements previous analyses of | ||
| 104 | road-barrier effects on small mammals, suggesting that subterranean | 104 | road-barrier effects on small mammals, suggesting that subterranean | ||
| 105 | species such as C. minutus can cope with these barriers, at least in | 105 | species such as C. minutus can cope with these barriers, at least in | ||
| 106 | conditions similar to our study area.", | 106 | conditions similar to our study area.", | ||
| 107 | "notes_translated": { | 107 | "notes_translated": { | ||
| 108 | "en": "Road-barrier effects can lead to population isolation, with | 108 | "en": "Road-barrier effects can lead to population isolation, with | ||
| 109 | consequent negative outcomes for individuals and populations. Small | 109 | consequent negative outcomes for individuals and populations. Small | ||
| 110 | mammals have been identified as particularly vulnerable to barrier | 110 | mammals have been identified as particularly vulnerable to barrier | ||
| 111 | effects, yet few studies have focused on subterranean species. Given | 111 | effects, yet few studies have focused on subterranean species. Given | ||
| 112 | the burrowing habit of these species, we hypothesized that roads block | 112 | the burrowing habit of these species, we hypothesized that roads block | ||
| 113 | their movement and therefore the gene flow between roadside | 113 | their movement and therefore the gene flow between roadside | ||
| 114 | populations. The tiny tuco-tuco (Ctenomys minutus), a small | 114 | populations. The tiny tuco-tuco (Ctenomys minutus), a small | ||
| 115 | subterranean rodent that inhabits the coastal plains of southern | 115 | subterranean rodent that inhabits the coastal plains of southern | ||
| 116 | Brazil, was used as a model species to test this hypothesis. We used | 116 | Brazil, was used as a model species to test this hypothesis. We used | ||
| 117 | 14 microsatellites to genotype 80 individuals from four colonies | 117 | 14 microsatellites to genotype 80 individuals from four colonies | ||
| 118 | (n\u2009=\u200920 per colony). We compared the population | 118 | (n\u2009=\u200920 per colony). We compared the population | ||
| 119 | differentiation (FST,\u00a0G\u2033ST\u00a0and DEST) and population | 119 | differentiation (FST,\u00a0G\u2033ST\u00a0and DEST) and population | ||
| 120 | structuring (STRUCTURE and GENELAND, and discriminant analysis of | 120 | structuring (STRUCTURE and GENELAND, and discriminant analysis of | ||
| 121 | principal components) of two colony pairs, one pair divided by a road, | 121 | principal components) of two colony pairs, one pair divided by a road, | ||
| 122 | and the other with no road or other potential barrier between the | 122 | and the other with no road or other potential barrier between the | ||
| 123 | colonies (control). The results indicated higher genetic | 123 | colonies (control). The results indicated higher genetic | ||
| 124 | differentiation and structuring between the roadside colonies than in | 124 | differentiation and structuring between the roadside colonies than in | ||
| 125 | the control sites, although less evident than initially predicted. We | 125 | the control sites, although less evident than initially predicted. We | ||
| 126 | concluded that the road reduced but did not halt the gene flow | 126 | concluded that the road reduced but did not halt the gene flow | ||
| 127 | of\u00a0C. minutus. Nevertheless, in view of the rapid economic | 127 | of\u00a0C. minutus. Nevertheless, in view of the rapid economic | ||
| 128 | development of the region, measures to ensure long-term gene flow, | 128 | development of the region, measures to ensure long-term gene flow, | ||
| 129 | i.e., installation or retrofitting of crossing structures, should be | 129 | i.e., installation or retrofitting of crossing structures, should be | ||
| 130 | considered. This study complements previous analyses of road-barrier | 130 | considered. This study complements previous analyses of road-barrier | ||
| 131 | effects on small mammals, suggesting that subterranean species such | 131 | effects on small mammals, suggesting that subterranean species such | ||
| 132 | as\u00a0C. minutus\u00a0can cope with these barriers, at least in | 132 | as\u00a0C. minutus\u00a0can cope with these barriers, at least in | ||
| 133 | conditions similar to our study area.", | 133 | conditions similar to our study area.", | ||
| 134 | "es": "Road-barrier effects can lead to population isolation, with | 134 | "es": "Road-barrier effects can lead to population isolation, with | ||
| 135 | consequent negative outcomes for individuals and populations. Small | 135 | consequent negative outcomes for individuals and populations. Small | ||
| 136 | mammals have been identified as particularly vulnerable to barrier | 136 | mammals have been identified as particularly vulnerable to barrier | ||
| 137 | effects, yet few studies have focused on subterranean species. Given | 137 | effects, yet few studies have focused on subterranean species. Given | ||
| 138 | the burrowing habit of these species, we hypothesized that roads block | 138 | the burrowing habit of these species, we hypothesized that roads block | ||
| 139 | their movement and therefore the gene flow between roadside | 139 | their movement and therefore the gene flow between roadside | ||
| 140 | populations. The tiny tuco-tuco (Ctenomys minutus), a small | 140 | populations. The tiny tuco-tuco (Ctenomys minutus), a small | ||
| 141 | subterranean rodent that inhabits the coastal plains of southern | 141 | subterranean rodent that inhabits the coastal plains of southern | ||
| 142 | Brazil, was used as a model species to test this hypothesis. We used | 142 | Brazil, was used as a model species to test this hypothesis. We used | ||
| 143 | 14 microsatellites to genotype 80 individuals from four colonies (n = | 143 | 14 microsatellites to genotype 80 individuals from four colonies (n = | ||
| 144 | 20 per colony). We compared the population differentiation (FST, | 144 | 20 per colony). We compared the population differentiation (FST, | ||
| 145 | G\u2033ST and DEST) and population structuring (STRUCTURE and | 145 | G\u2033ST and DEST) and population structuring (STRUCTURE and | ||
| 146 | GENELAND, and discriminant analysis of principal components) of two | 146 | GENELAND, and discriminant analysis of principal components) of two | ||
| 147 | colony pairs, one pair divided by a road, and the other with no road | 147 | colony pairs, one pair divided by a road, and the other with no road | ||
| 148 | or other potential barrier between the colonies (control). The results | 148 | or other potential barrier between the colonies (control). The results | ||
| 149 | indicated higher genetic differentiation and structuring between the | 149 | indicated higher genetic differentiation and structuring between the | ||
| 150 | roadside colonies than in the control sites, although less evident | 150 | roadside colonies than in the control sites, although less evident | ||
| 151 | than initially predicted. We concluded that the road reduced but did | 151 | than initially predicted. We concluded that the road reduced but did | ||
| 152 | not halt the gene flow of C. minutus. Nevertheless, in view of the | 152 | not halt the gene flow of C. minutus. Nevertheless, in view of the | ||
| 153 | rapid economic development of the region, measures to ensure long-term | 153 | rapid economic development of the region, measures to ensure long-term | ||
| 154 | gene flow, i.e., installation or retrofitting of crossing structures, | 154 | gene flow, i.e., installation or retrofitting of crossing structures, | ||
| 155 | should be considered. This study complements previous analyses of | 155 | should be considered. This study complements previous analyses of | ||
| 156 | road-barrier effects on small mammals, suggesting that subterranean | 156 | road-barrier effects on small mammals, suggesting that subterranean | ||
| 157 | species such as C. minutus can cope with these barriers, at least in | 157 | species such as C. minutus can cope with these barriers, at least in | ||
| 158 | conditions similar to our study area." | 158 | conditions similar to our study area." | ||
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