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Effects of late winter pruning at different phenological stages on vine yield components and berry composition in La Rioja, North-central Spain

机译:西班牙中北部拉里奥哈地区不同物候阶段的冬季修剪对葡萄产量构成和浆果组成的影响

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Aims: Under global warming, the desynchrony between technology maturity and phenolic maturity of wine grapes is a worthy concern. Late winter pruning (LWP) has been proved to be an effective way to delay the grape phenological stages. The aim of this study was to evaluate the effects of LWP at different phenological stages (based on Baillod & Baggiolini system) on the delay of the grape ripening, on vine yield components as well as on berry composition, among others, the anthocyanin to sugar ratio.Methods and results: The two-year (2015 and 2016) trial was conducted in Rioja wine region (North of Spain) on Maturana vines and in each year, four pruning treatments were carried out taking apical buds/shoots as reference: (1) winter pruning at stage A (WPA; dormant bud); (2) LWP at stage C (LWPC; green shoot tip) in 2015 and at stage F (LWPF; inflorescence clearly visible) in 2016; (3) LWP at stage G (LWPG; inflorescences separated); (4) LWP at stage H (LWPH; flowers separated). LWPC failed to delay the late phenological stages and did not exert important influence on vine yield and berry composition. LWPG and LWPH succeeded to delay all the phenological stages of grapes to a great extent and created a considerably cooler and longer ripening period compared to WPA. Vine yield was not affected by LWPF and was reduced significantly (averagely by 41%) by LWPG. LWPH lead to great losses in yield (averagely by 67%), especially in 2015. LWPG did not change the fruit composition while LWPH increased the ratio of anthocyanin to sugar and helped to maintain a relatively high level of acidity in berries.Conclusions: The primary cause of the decline in production seems to be the losses of flowers and/or the reduction in fruit set percentage in the current season, instead of the losses in inflorescences within buds in the previous season. For Maturana grapes, LWP after the stage F would reduce the vine yield and could be applied as an alternative to the time consuming cluster thinning to meet the needs of yield control. Delaying the winter pruning to stage H could improve the fruit quality in spite of the greater risk of botrytis and a serious decline in production.Significance and impact of the study: The outcomes of this research open a door for the winegrowers to realize the yield control in a simple way. Also, for those who only pursue wines of top quality (regardless of production), a very late winter pruning might provide them with high-quality grapes. Moreover, as can be seen obviously from our results, viticulturists could postpone the budburst date to whatever extent they wish thus reducing the risk of spring frost injury to zero, though this point is not our focus in the study.
机译:目的:在全球变暖的情况下,酿酒技术成熟度与酚类成熟度之间的不同步是一个值得关注的问题。事实证明,冬末修剪(LWP)是延迟葡萄物候期的有效方法。这项研究的目的是评估LWP在不同物候阶段(基于Baillod和Baggiolini系统)对葡萄成熟延迟,藤产量成分以及浆果组成以及花色苷转化为糖的影响。方法和结果:在西班牙北部的里奥哈葡萄酒产区(西班牙北部)对曼塔那(Maturana)葡萄进行了为期两年(2015年和2016年)的试验,并且每年以根尖芽/芽为参考进行四次修剪处理: 1)在阶段A(WPA;休眠芽)进行冬季修剪; (2)2015年C阶段(LWPC;绿色梢)的LWP和2016年F阶段(LWPF;花序清晰可见)的LWP; (3)G期的LWP(LWPG;花序分离); (4)在阶段H的LWP(LWPH;花分开)。 LWPC未能延迟后期的物候阶段,并且对葡萄产量和浆果组成没有重要影响。与WPA相比,LWPG和LWPH在很大程度上延迟了葡萄的所有物候阶段,并创造了相当凉爽和更长的成熟期。葡萄产量不受LWPF影响,而LWPG则使葡萄产量显着降低(平均降低41%)。 LWPH导致产量大幅下降(平均减少67%),尤其是在2015年。LWPG不会改变水果成分,而LWPH则增加了花色苷与糖的比率,并有助于维持浆果相对较高的酸度。产量下降的主要原因似乎是当前季节的花朵损失和/或坐果率降低,而不是前一个季节的花蕾中的花序损失。对于曼塔拉纳(Maturana)葡萄,F阶段后的LWP会降低藤本植物的产量,并且可以替代耗时的成簇细化来满足产量控制的需求。尽管出现葡萄孢的风险增加且产量严重下降,但将冬季修剪推迟到H阶段仍可改善果实质量。研究的意义和影响:该研究的结果为葡萄种植者实现产量控制打开了一扇门以一种简单的方式。同样,对于那些只追求高品质(无论产量如何)葡萄酒的人,很晚的冬季修剪可能会为他们提供高品质的葡萄。此外,从我们的结果中可以明显看出,葡萄栽培师可以将发芽日期推迟到他们希望的任何程度,从而将春季霜冻伤害的风险降低到零,尽管这不是我们研究的重点。

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