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En el instante 23 de junio de 2026, 16:03:10 UTC,
-
Modificado el valor del campo
spatial_coverage
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en Combined effects of deficit irrigation and crop level on early nectarine trees
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| 94 | "notes": "A three-year long experiment was implemented in an early | 94 | "notes": "A three-year long experiment was implemented in an early | ||
| 95 | nectarine (Prunus persica L. Batsch cv. Flanoba) commercial orchard to | 95 | nectarine (Prunus persica L. Batsch cv. Flanoba) commercial orchard to | ||
| 96 | evaluate the effects of deficit irrigation and different crop levels | 96 | evaluate the effects of deficit irrigation and different crop levels | ||
| 97 | on vegetative growth, plant water status, and fruit yield and quality. | 97 | on vegetative growth, plant water status, and fruit yield and quality. | ||
| 98 | Three irrigation treatments were assessed: (i) control, full | 98 | Three irrigation treatments were assessed: (i) control, full | ||
| 99 | irrigation (TCTL); (ii) normal practice of the farmer (TFRM); and | 99 | irrigation (TCTL); (ii) normal practice of the farmer (TFRM); and | ||
| 100 | (iii) regulated deficit irrigation (TRDI), whichinvolved irrigating | 100 | (iii) regulated deficit irrigation (TRDI), whichinvolved irrigating | ||
| 101 | the crop atthe same level as the control(TCTL) during the critical | 101 | the crop atthe same level as the control(TCTL) during the critical | ||
| 102 | periods of the first year and at 60% TCTL during postharvest. In the | 102 | periods of the first year and at 60% TCTL during postharvest. In the | ||
| 103 | lasttwo growing seasons the irrigation was sched uled to maintain the | 103 | lasttwo growing seasons the irrigation was sched uled to maintain the | ||
| 104 | signal intensity (SI) of maximum daily trunk shrinkage (SIMDS = | 104 | signal intensity (SI) of maximum daily trunk shrinkage (SIMDS = | ||
| 105 | MDSTRDI/MDSTCTL) at different water stress levels depending on the | 105 | MDSTRDI/MDSTCTL) at different water stress levels depending on the | ||
| 106 | phenological stage: SI = 1.0 (non-water stress) and SI = 1.4 (moderate | 106 | phenological stage: SI = 1.0 (non-water stress) and SI = 1.4 (moderate | ||
| 107 | water stress). Besides, during the lasttwo seasons,the interactions | 107 | water stress). Besides, during the lasttwo seasons,the interactions | ||
| 108 | between TCTL and TRDI were studied at five different crop levels, | 108 | between TCTL and TRDI were studied at five different crop levels, | ||
| 109 | which were obtained by controlling the distance between fruits left on | 109 | which were obtained by controlling the distance between fruits left on | ||
| 110 | the branches: from very low (16 cm between fruits) to very high (8 cm | 110 | the branches: from very low (16 cm between fruits) to very high (8 cm | ||
| 111 | between fruits). Crop water use efficiency (WUE) of TRDI was higher | 111 | between fruits). Crop water use efficiency (WUE) of TRDI was higher | ||
| 112 | than in TCTL and TFRM, increasing by around 25% in 2010 and 2011, and | 112 | than in TCTL and TFRM, increasing by around 25% in 2010 and 2011, and | ||
| 113 | around 74% the final year. Interestingly, TFRM increased the WUE from | 113 | around 74% the final year. Interestingly, TFRM increased the WUE from | ||
| 114 | the first year by more than 30%. The yield/annual increase in | 114 | the first year by more than 30%. The yield/annual increase in | ||
| 115 | trunk-cross-sectional area ( TCSA) ratio increased in TRDI with | 115 | trunk-cross-sectional area ( TCSA) ratio increased in TRDI with | ||
| 116 | respect to the other treatments as the experiment progressed, reaching | 116 | respect to the other treatments as the experiment progressed, reaching | ||
| 117 | differences of 53%. Vegetative growth was clearly sensitive to deficit | 117 | differences of 53%. Vegetative growth was clearly sensitive to deficit | ||
| 118 | irrigation with a strong correlation between the increase in the water | 118 | irrigation with a strong correlation between the increase in the water | ||
| 119 | stress integral obtained by midday stem water potential ( stem) and | 119 | stress integral obtained by midday stem water potential ( stem) and | ||
| 120 | the reduction in TSCA. In contrast, fruit production and quality were | 120 | the reduction in TSCA. In contrast, fruit production and quality were | ||
| 121 | not affected by water deficit. As regards the interaction between crop | 121 | not affected by water deficit. As regards the interaction between crop | ||
| 122 | level and water deficit, fruit firmness was the only fruit quality | 122 | level and water deficit, fruit firmness was the only fruit quality | ||
| 123 | parameter studied that presented significant differences, the highest | 123 | parameter studied that presented significant differences, the highest | ||
| 124 | values corresponding to the fruits from TRDI trees and the lowest crop | 124 | values corresponding to the fruits from TRDI trees and the lowest crop | ||
| 125 | level. In early nectarine trees, the postharvest period can be | 125 | level. In early nectarine trees, the postharvest period can be | ||
| 126 | considered as a non-critical period for applying RDI strategies but | 126 | considered as a non-critical period for applying RDI strategies but | ||
| 127 | only when the water stress integral applied is of low intensity in May | 127 | only when the water stress integral applied is of low intensity in May | ||
| 128 | and June (much lower than 9 MPa day), in order to limit the decrease | 128 | and June (much lower than 9 MPa day), in order to limit the decrease | ||
| 129 | in vegetative growth and so not affect the following harvests.", | 129 | in vegetative growth and so not affect the following harvests.", | ||
| 130 | "notes_translated": { | 130 | "notes_translated": { | ||
| 131 | "es": "A three-year long experiment was implemented in an early | 131 | "es": "A three-year long experiment was implemented in an early | ||
| 132 | nectarine (Prunus persica L. Batsch cv. Flanoba) commercial orchard to | 132 | nectarine (Prunus persica L. Batsch cv. Flanoba) commercial orchard to | ||
| 133 | evaluate the effects of deficit irrigation and different crop levels | 133 | evaluate the effects of deficit irrigation and different crop levels | ||
| 134 | on vegetative growth, plant water status, and fruit yield and quality. | 134 | on vegetative growth, plant water status, and fruit yield and quality. | ||
| 135 | Three irrigation treatments were assessed: (i) control, full | 135 | Three irrigation treatments were assessed: (i) control, full | ||
| 136 | irrigation (TCTL); (ii) normal practice of the farmer (TFRM); and | 136 | irrigation (TCTL); (ii) normal practice of the farmer (TFRM); and | ||
| 137 | (iii) regulated deficit irrigation (TRDI), whichinvolved irrigating | 137 | (iii) regulated deficit irrigation (TRDI), whichinvolved irrigating | ||
| 138 | the crop atthe same level as the control(TCTL) during the critical | 138 | the crop atthe same level as the control(TCTL) during the critical | ||
| 139 | periods of the first year and at 60% TCTL during postharvest. In the | 139 | periods of the first year and at 60% TCTL during postharvest. In the | ||
| 140 | lasttwo growing seasons the irrigation was sched uled to maintain the | 140 | lasttwo growing seasons the irrigation was sched uled to maintain the | ||
| 141 | signal intensity (SI) of maximum daily trunk shrinkage (SIMDS = | 141 | signal intensity (SI) of maximum daily trunk shrinkage (SIMDS = | ||
| 142 | MDSTRDI/MDSTCTL) at different water stress levels depending on the | 142 | MDSTRDI/MDSTCTL) at different water stress levels depending on the | ||
| 143 | phenological stage: SI = 1.0 (non-water stress) and SI = 1.4 (moderate | 143 | phenological stage: SI = 1.0 (non-water stress) and SI = 1.4 (moderate | ||
| 144 | water stress). Besides, during the lasttwo seasons,the interactions | 144 | water stress). Besides, during the lasttwo seasons,the interactions | ||
| 145 | between TCTL and TRDI were studied at five different crop levels, | 145 | between TCTL and TRDI were studied at five different crop levels, | ||
| 146 | which were obtained by controlling the distance between fruits left on | 146 | which were obtained by controlling the distance between fruits left on | ||
| 147 | the branches: from very low (16 cm between fruits) to very high (8 cm | 147 | the branches: from very low (16 cm between fruits) to very high (8 cm | ||
| 148 | between fruits). Crop water use efficiency (WUE) of TRDI was higher | 148 | between fruits). Crop water use efficiency (WUE) of TRDI was higher | ||
| 149 | than in TCTL and TFRM, increasing by around 25% in 2010 and 2011, and | 149 | than in TCTL and TFRM, increasing by around 25% in 2010 and 2011, and | ||
| 150 | around 74% the final year. Interestingly, TFRM increased the WUE from | 150 | around 74% the final year. Interestingly, TFRM increased the WUE from | ||
| 151 | the first year by more than 30%. The yield/annual increase in | 151 | the first year by more than 30%. The yield/annual increase in | ||
| 152 | trunk-cross-sectional area ( TCSA) ratio increased in TRDI with | 152 | trunk-cross-sectional area ( TCSA) ratio increased in TRDI with | ||
| 153 | respect to the other treatments as the experiment progressed, reaching | 153 | respect to the other treatments as the experiment progressed, reaching | ||
| 154 | differences of 53%. Vegetative growth was clearly sensitive to deficit | 154 | differences of 53%. Vegetative growth was clearly sensitive to deficit | ||
| 155 | irrigation with a strong correlation between the increase in the water | 155 | irrigation with a strong correlation between the increase in the water | ||
| 156 | stress integral obtained by midday stem water potential ( stem) and | 156 | stress integral obtained by midday stem water potential ( stem) and | ||
| 157 | the reduction in TSCA. In contrast, fruit production and quality were | 157 | the reduction in TSCA. In contrast, fruit production and quality were | ||
| 158 | not affected by water deficit. As regards the interaction between crop | 158 | not affected by water deficit. As regards the interaction between crop | ||
| 159 | level and water deficit, fruit firmness was the only fruit quality | 159 | level and water deficit, fruit firmness was the only fruit quality | ||
| 160 | parameter studied that presented significant differences, the highest | 160 | parameter studied that presented significant differences, the highest | ||
| 161 | values corresponding to the fruits from TRDI trees and the lowest crop | 161 | values corresponding to the fruits from TRDI trees and the lowest crop | ||
| 162 | level. In early nectarine trees, the postharvest period can be | 162 | level. In early nectarine trees, the postharvest period can be | ||
| 163 | considered as a non-critical period for applying RDI strategies but | 163 | considered as a non-critical period for applying RDI strategies but | ||
| 164 | only when the water stress integral applied is of low intensity in May | 164 | only when the water stress integral applied is of low intensity in May | ||
| 165 | and June (much lower than 9 MPa day), in order to limit the decrease | 165 | and June (much lower than 9 MPa day), in order to limit the decrease | ||
| 166 | in vegetative growth and so not affect the following harvests." | 166 | in vegetative growth and so not affect the following harvests." | ||
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