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Net CO2 Assimilation and Carbohydrate Partitioning of Grapevine Leaves in Response to Trunk Girdling and Gibberellic Acid Application

机译:响应于树干缠结和赤霉素施用葡萄叶片的净CO2同化和碳水化合物分配

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摘要

Leaf net CO2 assimilation rate (A), stomatal conductance (gs), carboxylation efficiency, and foliar nonstructural carbohydrates were measured on mature, field-grown Vitis vinifera L. (cv Thompson Seedless) vines that had been trunk girdled, sprayed with gibberellic acid, or both, shortly after anthesis. Girdling reduced A, gs, and carboxylation efficiency when measured 2 weeks after imposition of the treatments. Diurnal measurements indicated that A of girdled vines was less than that of control vines between 1000 and 1800 hours. Gibberellic acid mitigated the depressing effect of girdling on gs during the same diurnal measurements. The concentrations of foliar carbohydrates were greatest for the girdled vines, followed by the combination treatment and were lowest for the control vines. Foliar carbohydrates were greater for girdled vines 4 weeks after the treatments were imposed, however, by this time there was no significant difference in A between the control and girdled vines. Two and 4 weeks after the experiment was initiated root carbohydrate concentrations were less for the girdled vines when compared to the control vines. The data indicate that the reduction in A of girdled grapevines is not associated with the accumulation of leaf nonstructural carbohydrates following the girdling treatment.
机译:在成熟的,田间生长的葡萄树(乔普森汤普森无核)藤上修剪,并喷洒赤霉素,测量叶片净CO2同化率(A),气孔导度(gs),羧化效率和叶面非结构性碳水化合物。 ,或在开花后不久。实施处理2周后,环剥减少了A,gs和羧化效率。昼夜测量表明,在1000至1800小时之间,环剥藤蔓的A小于对照藤蔓的A。赤霉素在相同的昼夜测量中减轻了环剥对gs的抑制作用。叶状碳水化合物的浓度在环束藤蔓中最大,然后进行联合处理,而在对照藤蔓中则最低。实施处理后4周,环绕葡萄藤的叶中碳水化合物含量更高,但是,此时对照葡萄藤和环绕葡萄藤之间的A值没有显着差异。实验开始后两周和四周,与对照藤相比,环束藤的根碳水化合物含量要低。数据表明,经过环剥处理后,环剥葡萄藤的A减少与叶片非结构性碳水化合物的积累无关。

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