首页> 外文期刊>The Journal of Agricultural Science >Analysis of the relationships between climate variability and grapevine phenology in the Nobile di Montepulciano wine production area. (Special Section: Climate change and agriculture.)
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Analysis of the relationships between climate variability and grapevine phenology in the Nobile di Montepulciano wine production area. (Special Section: Climate change and agriculture.)

机译:Nobile Di Montepulciano葡萄酒生产区中气候变异性与葡萄虫素质关系的关系分析。 (特别部分:气候变化和农业。)

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Climate represents one of the main inputs necessary for plants to complete their vegetative-productive cycle, having a direct effect on the onset and duration of phenological stages and development of crops. Equally important are its indirect effects, affecting field operations such as the application of fertilizer, pruning and crop protection, finally determining the yield. In the present study, phenological stages of the Sangiovese grapevine for the production of Nobile di Montepulciano wine were analysed and related to historical series of meteorological information (since 1970 in Tuscany, Italy). Weather conditions were described through large-scale meteorological information; in particular geopotential height at the 500 hPa level (500 hPa GPH) and North Atlantic Oscillation (NAO) index were considered. All data were provided by the National Oceanic and Atmospheric Administration-Cooperative Institute for Research in Environmental Sciences (NOAA-CIRES) Climate Diagnostics Center, Boulder, Colorado, USA, available from the NOAA-CIRES website (http://www.cdc.noaa.gov/) and processed by the National Center for Environmental Prediction/National Center for Atmospheric Research (NCEP/NCAR) Reanalysis Project. Conventional meteorological data, such as air temperature and cumulated rainfall, from ground weather stations were also used. The effects of meteorological parameters on crop phenology (bud-break, flowering and harvest time) were investigated by means of regression analysis, while teleconnections between phenological data and large-scale meteo-climatological data were analysed through correlation maps created using the interactive plotting and analysis link from the NOAA-CIRES website (http://www.cdc.noaa.gov). All correlations were calculated on a monthly to a multi-monthly basis, and also in relation to the different physiological stages of the crop, from 1970 to 2006. The climate change and variability impact on the crop was investigated by trend analysis of meteorological information and its effect on the onset of grapevine phenological stages. The results demonstrated that large-scale meteorological information has a significant effect on the onset of the phenological stages of grapevine. In particular, winter NAO was negatively correlated with bud-break and flowering dates, while GPH of February-March, March-May and May-September were negatively correlated with bud-break, flowering and harvest dates, respectively. The trend analysis demonstrated that the change and variability of climate, due to global warming, directly affects the development of grapevine leading to an anticipation of all considered phenophases.Digital Object Identifier http://dx.doi.org/10.1017/S0021859610000432
机译:气候代表植物完成其植物生产循环所必需的主要投入之一,对诸如诸如诸如捕母的阶段阶段的发作和持续时间和作物的发育产生直接影响。同样重要的是其间接影响,影响肥料,修剪和作物保护等施用等现场作业,最终确定产量。在目前的研究中,分析了Nopile Di Montepulciano葡萄酒的Sangiovese葡萄葡萄酒的鉴别阶段,并与历史历史的气象信息系列(自1970年在意大利)进行了相关。通过大规模气象信息描述了天气条件;考虑了在500 HPA水平(500 HPA GPH)和北大西洋振荡(NAO)指数的地理调谐高度。所有数据都由国家海洋和大气管理合作社的环境科学研究所(NOAA-CIRES)气候诊断中心,博尔德,科罗拉多州,USA,从Noaa-Cires网站提供(http://www.cdc。 Noaa.gov/)由国家环境预测中心处理,大气研究中心(NCEP / NCAR)Reanalysis项目。还使用常规气象数据,例如空气温度和累积的降雨,从地天气站。通过回归分析研究了气象参数对作物候选的影响(萌芽,开花和收获时间),而通过使用互动绘图创建的相关图分析了鉴别数据和大规模的核心气候数据之间的遥控来自Noaa-Cires网站的分析链接(http://www.cdc.noaa.gov)。所有相关性按每月计算到多月,同样与作物的不同生理阶段,从1970年到2006年。通过气象信息的趋势分析,研究了对作物的气候变化和可变性的影响它对葡萄鉴阶段发作的影响。结果表明,大规模的气象信息对葡萄牙毒性阶段的发作具有显着影响。特别是,冬季NAO与芽突破和开花日期负相关,而3月至5月和5月和9月份的GPH分别与萌芽,开花和收获日期呈负相关。趋势分析表明,由于全球变暖,气候的变化和变化直接影响了葡萄的发展,导致所有被认为的苯缺陷的人都有预期。目的对象标识符http://dx.doi.org/10.1017/s002185961000000432

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