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en Asparagus macrorrhizus Pedrol, Regalado et Lpez-Encina, an endemic species from Spain in extreme extinction risk, is a valuable genetic resource for asparagus breeding -
Modificado el valor del campo
modified
del recurso Distribución HTML a2026-06-25
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) en Asparagus macrorrhizus Pedrol, Regalado et Lpez-Encina, an endemic species from Spain in extreme extinction risk, is a valuable genetic resource for asparagus breeding
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| 8 | "author": "Regalado, J.J., Moreno, R., Castro, P., Carmona-Martin, | 8 | "author": "Regalado, J.J., Moreno, R., Castro, P., Carmona-Martin, | ||
| 9 | E., Rodriguez, R., Pedrol, J., Larranaga, N., Guillen, R., Gil, J. y | 9 | E., Rodriguez, R., Pedrol, J., Larranaga, N., Guillen, R., Gil, J. y | ||
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| 87 | "miteco_data_population": { | 97 | "miteco_data_population": { | ||
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| 93 | "miteco_dataset_type": | 103 | "miteco_dataset_type": | ||
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| 98 | "notes": "Asparagus maritimus is a species distributed in sandy | 108 | "notes": "Asparagus maritimus is a species distributed in sandy | ||
| 99 | soils along the Mediterranean coast. It has been reported as salt | 109 | soils along the Mediterranean coast. It has been reported as salt | ||
| 100 | tolerant and resistant to rust. The wild asparagus species are a very | 110 | tolerant and resistant to rust. The wild asparagus species are a very | ||
| 101 | important genetic resources for asparagus breeding because the current | 111 | important genetic resources for asparagus breeding because the current | ||
| 102 | commercial cultivars have a narrow genetic base. Until recently, the | 112 | commercial cultivars have a narrow genetic base. Until recently, the | ||
| 103 | only population of A. maritimus catalogued in Spain was a small | 113 | only population of A. maritimus catalogued in Spain was a small | ||
| 104 | population, which is at high extinction risk, located around the | 114 | population, which is at high extinction risk, located around the | ||
| 105 | coastal lagoon \"Mar Menor\" in the region of Murcia. Different | 115 | coastal lagoon \"Mar Menor\" in the region of Murcia. Different | ||
| 106 | studies carried out in the current work support the recent description | 116 | studies carried out in the current work support the recent description | ||
| 107 | of this population as a new species named Asparagus macrorrhizus. | 117 | of this population as a new species named Asparagus macrorrhizus. | ||
| 108 | Plants from three populations of A. maritimus were used to carry out | 118 | Plants from three populations of A. maritimus were used to carry out | ||
| 109 | studies of characterization and the results were compared with plants | 119 | studies of characterization and the results were compared with plants | ||
| 110 | of A. macrorrhizus. The morphological studies showed clear differences | 120 | of A. macrorrhizus. The morphological studies showed clear differences | ||
| 111 | between the populations of A. maritimus and A. macrorrhizus. One of | 121 | between the populations of A. maritimus and A. macrorrhizus. One of | ||
| 112 | the differences found between these populations was at the ploidy | 122 | the differences found between these populations was at the ploidy | ||
| 113 | level. The plants of A. maritimus were hexaploid (2n = 6x = 60), while | 123 | level. The plants of A. maritimus were hexaploid (2n = 6x = 60), while | ||
| 114 | the plants of A. macrorrhizus were dodecaploid (2n = 12x = 120). Also, | 124 | the plants of A. macrorrhizus were dodecaploid (2n = 12x = 120). Also, | ||
| 115 | the flavonoid composition showed that A. maritimus contains six | 125 | the flavonoid composition showed that A. maritimus contains six | ||
| 116 | different flavonoids while in A. macrorrhizus 90 % of the flavonoid | 126 | different flavonoids while in A. macrorrhizus 90 % of the flavonoid | ||
| 117 | content corresponds to only one flavonoid (Nicotiflorin) followed by | 127 | content corresponds to only one flavonoid (Nicotiflorin) followed by | ||
| 118 | minor quantities of other two. Another difference between these | 128 | minor quantities of other two. Another difference between these | ||
| 119 | populations was supported by the principal coordinate analysis (PCoA) | 129 | populations was supported by the principal coordinate analysis (PCoA) | ||
| 120 | using data from 4 EST-SSRs markers amplified in plants of A. maritimus | 130 | using data from 4 EST-SSRs markers amplified in plants of A. maritimus | ||
| 121 | and A. macrorrhizus, and clearly separates the two species. The | 131 | and A. macrorrhizus, and clearly separates the two species. The | ||
| 122 | differences found in this work highlight the importance of A. | 132 | differences found in this work highlight the importance of A. | ||
| 123 | macrorrhizus as a possible genetic resource for asparagus breeding. | 133 | macrorrhizus as a possible genetic resource for asparagus breeding. | ||
| 124 | The distribution of A. macrorrhizus is limited to the area surrounding | 134 | The distribution of A. macrorrhizus is limited to the area surrounding | ||
| 125 | the \"Mar Menor\" lagoon. The prospections carried out in the last | 135 | the \"Mar Menor\" lagoon. The prospections carried out in the last | ||
| 126 | years indicated the high risk of extinction of this species due to the | 136 | years indicated the high risk of extinction of this species due to the | ||
| 127 | urbanization of this natural habitat. Therefore, we have included A. | 137 | urbanization of this natural habitat. Therefore, we have included A. | ||
| 128 | macrorrhizus in our germplasm bank in vivo and in vitro as well as in | 138 | macrorrhizus in our germplasm bank in vivo and in vitro as well as in | ||
| 129 | the breeding programs.", | 139 | the breeding programs.", | ||
| 130 | "notes_translated": { | 140 | "notes_translated": { | ||
| 131 | "es": "Asparagus maritimus is a species distributed in sandy soils | 141 | "es": "Asparagus maritimus is a species distributed in sandy soils | ||
| 132 | along the Mediterranean coast. It has been reported as salt tolerant | 142 | along the Mediterranean coast. It has been reported as salt tolerant | ||
| 133 | and resistant to rust. The wild asparagus species are a very important | 143 | and resistant to rust. The wild asparagus species are a very important | ||
| 134 | genetic resources for asparagus breeding because the current | 144 | genetic resources for asparagus breeding because the current | ||
| 135 | commercial cultivars have a narrow genetic base. Until recently, the | 145 | commercial cultivars have a narrow genetic base. Until recently, the | ||
| 136 | only population of A. maritimus catalogued in Spain was a small | 146 | only population of A. maritimus catalogued in Spain was a small | ||
| 137 | population, which is at high extinction risk, located around the | 147 | population, which is at high extinction risk, located around the | ||
| 138 | coastal lagoon \"Mar Menor\" in the region of Murcia. Different | 148 | coastal lagoon \"Mar Menor\" in the region of Murcia. Different | ||
| 139 | studies carried out in the current work support the recent description | 149 | studies carried out in the current work support the recent description | ||
| 140 | of this population as a new species named Asparagus macrorrhizus. | 150 | of this population as a new species named Asparagus macrorrhizus. | ||
| 141 | Plants from three populations of A. maritimus were used to carry out | 151 | Plants from three populations of A. maritimus were used to carry out | ||
| 142 | studies of characterization and the results were compared with plants | 152 | studies of characterization and the results were compared with plants | ||
| 143 | of A. macrorrhizus. The morphological studies showed clear differences | 153 | of A. macrorrhizus. The morphological studies showed clear differences | ||
| 144 | between the populations of A. maritimus and A. macrorrhizus. One of | 154 | between the populations of A. maritimus and A. macrorrhizus. One of | ||
| 145 | the differences found between these populations was at the ploidy | 155 | the differences found between these populations was at the ploidy | ||
| 146 | level. The plants of A. maritimus were hexaploid (2n = 6x = 60), while | 156 | level. The plants of A. maritimus were hexaploid (2n = 6x = 60), while | ||
| 147 | the plants of A. macrorrhizus were dodecaploid (2n = 12x = 120). Also, | 157 | the plants of A. macrorrhizus were dodecaploid (2n = 12x = 120). Also, | ||
| 148 | the flavonoid composition showed that A. maritimus contains six | 158 | the flavonoid composition showed that A. maritimus contains six | ||
| 149 | different flavonoids while in A. macrorrhizus 90 % of the flavonoid | 159 | different flavonoids while in A. macrorrhizus 90 % of the flavonoid | ||
| 150 | content corresponds to only one flavonoid (Nicotiflorin) followed by | 160 | content corresponds to only one flavonoid (Nicotiflorin) followed by | ||
| 151 | minor quantities of other two. Another difference between these | 161 | minor quantities of other two. Another difference between these | ||
| 152 | populations was supported by the principal coordinate analysis (PCoA) | 162 | populations was supported by the principal coordinate analysis (PCoA) | ||
| 153 | using data from 4 EST-SSRs markers amplified in plants of A. maritimus | 163 | using data from 4 EST-SSRs markers amplified in plants of A. maritimus | ||
| 154 | and A. macrorrhizus, and clearly separates the two species. The | 164 | and A. macrorrhizus, and clearly separates the two species. The | ||
| 155 | differences found in this work highlight the importance of A. | 165 | differences found in this work highlight the importance of A. | ||
| 156 | macrorrhizus as a possible genetic resource for asparagus breeding. | 166 | macrorrhizus as a possible genetic resource for asparagus breeding. | ||
| 157 | The distribution of A. macrorrhizus is limited to the area surrounding | 167 | The distribution of A. macrorrhizus is limited to the area surrounding | ||
| 158 | the \"Mar Menor\" lagoon. The prospections carried out in the last | 168 | the \"Mar Menor\" lagoon. The prospections carried out in the last | ||
| 159 | years indicated the high risk of extinction of this species due to the | 169 | years indicated the high risk of extinction of this species due to the | ||
| 160 | urbanization of this natural habitat. Therefore, we have included A. | 170 | urbanization of this natural habitat. Therefore, we have included A. | ||
| 161 | macrorrhizus in our germplasm bank in vivo and in vitro as well as in | 171 | macrorrhizus in our germplasm bank in vivo and in vitro as well as in | ||
| 162 | the breeding programs." | 172 | the breeding programs." | ||
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| 329 | "http://datos.gob.es/kos/sector-publico/sector/medio-ambiente" | 339 | "http://datos.gob.es/kos/sector-publico/sector/medio-ambiente" | ||
| 330 | ], | 340 | ], | ||
| 331 | "title": "Asparagus macrorrhizus Pedrol, Regalado et Lpez-Encina, an | 341 | "title": "Asparagus macrorrhizus Pedrol, Regalado et Lpez-Encina, an | ||
| 332 | endemic species from Spain in extreme extinction risk, is a valuable | 342 | endemic species from Spain in extreme extinction risk, is a valuable | ||
| 333 | genetic resource for asparagus breeding", | 343 | genetic resource for asparagus breeding", | ||
| 334 | "title_translated": { | 344 | "title_translated": { | ||
| 335 | "es": "Asparagus macrorrhizus Pedrol, Regalado et Lpez-Encina, an | 345 | "es": "Asparagus macrorrhizus Pedrol, Regalado et Lpez-Encina, an | ||
| 336 | endemic species from Spain in extreme extinction risk, is a valuable | 346 | endemic species from Spain in extreme extinction risk, is a valuable | ||
| 337 | genetic resource for asparagus breeding" | 347 | genetic resource for asparagus breeding" | ||
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| 340 | "http://inspire.ec.europa.eu/metadata-codelist/TopicCategory/biota", | 350 | "http://inspire.ec.europa.eu/metadata-codelist/TopicCategory/biota", | ||
| 341 | "type": "dataset", | 351 | "type": "dataset", | ||
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| 344 | "version_notes": { | 354 | "version_notes": { | ||
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| 346 | } | 356 | } | ||
| 347 | } | 357 | } |