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en Changes induced by water stress on water relations, stomatal behaviour and morphology of table grapes (cv. Crimson Seedless) grown in pots -
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del recurso Distribución HTML a2026-06-25
(anteriormente2026-06-23
) en Changes induced by water stress on water relations, stomatal behaviour and morphology of table grapes (cv. Crimson Seedless) grown in pots
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| 95 | "notes": "The response of different deficit irrigation strategies on | 105 | "notes": "The response of different deficit irrigation strategies on | ||
| 96 | physiological and morphological parameters on table grapes (cv. | 106 | physiological and morphological parameters on table grapes (cv. | ||
| 97 | Crimson Seedless) grown in pots was studied three times a day to | 107 | Crimson Seedless) grown in pots was studied three times a day to | ||
| 98 | evaluate how such strategies could be safely used for hardening and to | 108 | evaluate how such strategies could be safely used for hardening and to | ||
| 99 | ascertain their tolerance to drought. Five precondi tioning treatments | 109 | ascertain their tolerance to drought. Five precondi tioning treatments | ||
| 100 | were applied:(i) CTL-1 and CTL-2; both irrigated daily to field | 110 | were applied:(i) CTL-1 and CTL-2; both irrigated daily to field | ||
| 101 | capacity;(ii) DI, watered to 50% of CTL-1; (iii) PRDFIX, permanently | 111 | capacity;(ii) DI, watered to 50% of CTL-1; (iii) PRDFIX, permanently | ||
| 102 | watered to 50% of CTL-1 in a pot, and (iv) PRDALT, the root was split | 112 | watered to 50% of CTL-1 in a pot, and (iv) PRDALT, the root was split | ||
| 103 | into two pots, and the pots alternatively watered to 50% of CTL-1 when | 113 | into two pots, and the pots alternatively watered to 50% of CTL-1 when | ||
| 104 | the volumetric sub strate water content ( v) reached 12%. 30 days | 114 | the volumetric sub strate water content ( v) reached 12%. 30 days | ||
| 105 | after the application of the preconditioning treatments, vines were | 115 | after the application of the preconditioning treatments, vines were | ||
| 106 | subjected to drought for 7 days, except for CTL-1. After that, vines | 116 | subjected to drought for 7 days, except for CTL-1. After that, vines | ||
| 107 | were re-irrigated and their recovery was studied for 7 days. Crimson | 117 | were re-irrigated and their recovery was studied for 7 days. Crimson | ||
| 108 | Seedless displayed different responses to water stress, depend ing on | 118 | Seedless displayed different responses to water stress, depend ing on | ||
| 109 | the diurnal course. At predawn (t1) and early morning (t2), the | 119 | the diurnal course. At predawn (t1) and early morning (t2), the | ||
| 110 | cultivar showed near-anisohydric behaviour,through a less effective | 120 | cultivar showed near-anisohydric behaviour,through a less effective | ||
| 111 | stomatal control of drought, whereas at midday (t3)the behaviour was | 121 | stomatal control of drought, whereas at midday (t3)the behaviour was | ||
| 112 | near-isohydric. Although the total amount of irrigation water was the | 122 | near-isohydric. Although the total amount of irrigation water was the | ||
| 113 | same for DI, PRDALT and PRDFIX, the vines from the last had a reduced | 123 | same for DI, PRDALT and PRDFIX, the vines from the last had a reduced | ||
| 114 | photosynthetic activity, probably due to a limited sap flow. Water | 124 | photosynthetic activity, probably due to a limited sap flow. Water | ||
| 115 | stress conditions induced avoidance mechanisms to drought such as | 125 | stress conditions induced avoidance mechanisms to drought such as | ||
| 116 | stomatal closure, partial defoliation and a reduction in leaf | 126 | stomatal closure, partial defoliation and a reduction in leaf | ||
| 117 | insertion angle. Osmotic adjustment was only observed in | 127 | insertion angle. Osmotic adjustment was only observed in | ||
| 118 | un-preconditioned vines (CTL-2) but it was not enough to reach full | 128 | un-preconditioned vines (CTL-2) but it was not enough to reach full | ||
| 119 | turgor. In addition, PRDFIX and CTL-2 vines suffered serious | 129 | turgor. In addition, PRDFIX and CTL-2 vines suffered serious | ||
| 120 | dehydration damages to biomass accumulation and vine quality, | 130 | dehydration damages to biomass accumulation and vine quality, | ||
| 121 | regardless of the recovery of gas exchange parameters. PRDALT and DI | 131 | regardless of the recovery of gas exchange parameters. PRDALT and DI | ||
| 122 | can be used as safe techniques for irrigation scheduling in the | 132 | can be used as safe techniques for irrigation scheduling in the | ||
| 123 | nursery stage, because of their adaptability to water stress and so | 133 | nursery stage, because of their adaptability to water stress and so | ||
| 124 | improve the survivability of the young table grapes plantations.", | 134 | improve the survivability of the young table grapes plantations.", | ||
| 125 | "notes_translated": { | 135 | "notes_translated": { | ||
| 126 | "es": "The response of different deficit irrigation strategies on | 136 | "es": "The response of different deficit irrigation strategies on | ||
| 127 | physiological and morphological parameters on table grapes (cv. | 137 | physiological and morphological parameters on table grapes (cv. | ||
| 128 | Crimson Seedless) grown in pots was studied three times a day to | 138 | Crimson Seedless) grown in pots was studied three times a day to | ||
| 129 | evaluate how such strategies could be safely used for hardening and to | 139 | evaluate how such strategies could be safely used for hardening and to | ||
| 130 | ascertain their tolerance to drought. Five precondi tioning treatments | 140 | ascertain their tolerance to drought. Five precondi tioning treatments | ||
| 131 | were applied:(i) CTL-1 and CTL-2; both irrigated daily to field | 141 | were applied:(i) CTL-1 and CTL-2; both irrigated daily to field | ||
| 132 | capacity;(ii) DI, watered to 50% of CTL-1; (iii) PRDFIX, permanently | 142 | capacity;(ii) DI, watered to 50% of CTL-1; (iii) PRDFIX, permanently | ||
| 133 | watered to 50% of CTL-1 in a pot, and (iv) PRDALT, the root was split | 143 | watered to 50% of CTL-1 in a pot, and (iv) PRDALT, the root was split | ||
| 134 | into two pots, and the pots alternatively watered to 50% of CTL-1 when | 144 | into two pots, and the pots alternatively watered to 50% of CTL-1 when | ||
| 135 | the volumetric sub strate water content ( v) reached 12%. 30 days | 145 | the volumetric sub strate water content ( v) reached 12%. 30 days | ||
| 136 | after the application of the preconditioning treatments, vines were | 146 | after the application of the preconditioning treatments, vines were | ||
| 137 | subjected to drought for 7 days, except for CTL-1. After that, vines | 147 | subjected to drought for 7 days, except for CTL-1. After that, vines | ||
| 138 | were re-irrigated and their recovery was studied for 7 days. Crimson | 148 | were re-irrigated and their recovery was studied for 7 days. Crimson | ||
| 139 | Seedless displayed different responses to water stress, depend ing on | 149 | Seedless displayed different responses to water stress, depend ing on | ||
| 140 | the diurnal course. At predawn (t1) and early morning (t2), the | 150 | the diurnal course. At predawn (t1) and early morning (t2), the | ||
| 141 | cultivar showed near-anisohydric behaviour,through a less effective | 151 | cultivar showed near-anisohydric behaviour,through a less effective | ||
| 142 | stomatal control of drought, whereas at midday (t3)the behaviour was | 152 | stomatal control of drought, whereas at midday (t3)the behaviour was | ||
| 143 | near-isohydric. Although the total amount of irrigation water was the | 153 | near-isohydric. Although the total amount of irrigation water was the | ||
| 144 | same for DI, PRDALT and PRDFIX, the vines from the last had a reduced | 154 | same for DI, PRDALT and PRDFIX, the vines from the last had a reduced | ||
| 145 | photosynthetic activity, probably due to a limited sap flow. Water | 155 | photosynthetic activity, probably due to a limited sap flow. Water | ||
| 146 | stress conditions induced avoidance mechanisms to drought such as | 156 | stress conditions induced avoidance mechanisms to drought such as | ||
| 147 | stomatal closure, partial defoliation and a reduction in leaf | 157 | stomatal closure, partial defoliation and a reduction in leaf | ||
| 148 | insertion angle. Osmotic adjustment was only observed in | 158 | insertion angle. Osmotic adjustment was only observed in | ||
| 149 | un-preconditioned vines (CTL-2) but it was not enough to reach full | 159 | un-preconditioned vines (CTL-2) but it was not enough to reach full | ||
| 150 | turgor. In addition, PRDFIX and CTL-2 vines suffered serious | 160 | turgor. In addition, PRDFIX and CTL-2 vines suffered serious | ||
| 151 | dehydration damages to biomass accumulation and vine quality, | 161 | dehydration damages to biomass accumulation and vine quality, | ||
| 152 | regardless of the recovery of gas exchange parameters. PRDALT and DI | 162 | regardless of the recovery of gas exchange parameters. PRDALT and DI | ||
| 153 | can be used as safe techniques for irrigation scheduling in the | 163 | can be used as safe techniques for irrigation scheduling in the | ||
| 154 | nursery stage, because of their adaptability to water stress and so | 164 | nursery stage, because of their adaptability to water stress and so | ||
| 155 | improve the survivability of the young table grapes plantations." | 165 | improve the survivability of the young table grapes plantations." | ||
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