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Gas exchange of field-grown Vitis vinifera L. cv. zweigelt leaves in relation to leaf age and position along the stem

机译:田间种植的葡萄(Vitis vinifera L. cv)的气体交换。 Zweigelt叶片与叶片年龄和沿茎的位置有关

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Aims: The study aimed to investigate the effects of leaf age and position along the stem on the seasonal evolution of photosynthesis and water use efficiency (WUE) of primary leaves of field-grown grapevines (Vitis vinifera L. cv. Zweigelt) under natural growing conditions in the Pannonian climate.Methods and results: Single-leaf gas exchange measurements were carried out in three vineyards with different planting densities, training systems and canopy management in the Neusiedlersee region (Burgenland, Austria). From the beginning of leaf development until flowering, basal leaves in the fruiting zone showed the highest photosynthetic activity. After flowering until ripening, the zone with the highest photosynthetic activity continuously moved in the apical direction. Leaves reached their maximum photosynthetic activity 30 to 40 days after emergence, depending on investigation site and vineyard management. Due to sufficient water supply, photosynthesis of old leaves decreased slowly; thus 100 days after unfolding leaves still retained 65% to 75% of their maximum photosynthetic activity.Conclusion: The development of single-leaf photosynthesis in the Zweigelt grapevine corresponded to the results of prior investigations on other grape varieties. However, vineyard management strongly influenced the evolution of gas exchange during the growing period. Leaves from vines stressed by high crop load or poor canopy management showed early leaf senescence and a strong decline in photosynthetic activity after reaching maximum level. Well-watered leaves from shoot-thinned vines with moderate crop load and equal light exposure throughout the canopy exhibited high photosynthesis with a much slower decrease in older leaves.Significance and impact of the study: The results indicate that under favourable growing conditions ensured by adequate water supply and canopy management, basal leaves maintain good photosynthesis and WUE over a long period of time. Thus old leaves, as well, can contribute to the photosynthesis of the entire vine.
机译:目的:该研究旨在研究自然生长条件下田间葡萄(Vitis vinifera L. cv。Zweigelt)初生叶片的叶龄和茎部位置对光合作用的季节性演变和水分利用效率(WUE)的影响。方法和结果:在新西德勒湖地区(奥地利布尔根兰州)的三个种植密度,培训系统和林冠管理不同的葡萄园中进行了单叶气体交换测量。从叶片发育开始到开花,在结果区域的基叶显示出最高的光合活性。开花直至成熟后,具有最高光合活性的区域不断向顶端移动。叶片在出苗后30至40天达到其最大的光合作用活性,这取决于调查地点和葡萄园管理。由于供水充足,老叶的光合作用缓慢下降;因此,展开后100天,叶片仍保留了其最大光合活性的65%至75%。结论:Zweigelt葡萄单叶光合作用的发展与先前对其他葡萄品种的研究结果相对应。但是,葡萄园管理在生长期强烈影响着气体交换的发展。受到高作物负荷或冠层管理不良影响的葡萄藤叶片显示出早期叶片衰老,并在达到最高水平后光合活性急剧下降。研究表明,在有利的生长条件下,适当的保证了在适当的生长条件下可以保持良好的作物生长,并在整个树冠上保持适当的光照量,并在整个树冠中均暴露于相同的光照下,从而使叶片保持良好的光合作用。在供水和冠层管理方面,基生叶在很长一段时间内都能保持良好的光合作用和水分利用效率。因此,老叶子也可以促进整个藤蔓的光合作用。

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