长期(1764-2017)气温对意大利北部两个地区谷物和葡萄藤物候的影响

IF 2.6 3区 农林科学 Q1 AGRONOMY
D. Cammarano, F. Becherini, L. Leolini, Dario Camuffo, M. Moriondo, A. della Valle, R. Ferrise
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引用次数: 0

摘要

了解长期温度变化如何影响主要农业作物的酚学,对于制定针对近期和远期气候影响的有针对性的适应策略至关重要。本研究的目的是使用作物酚学作为替代品,量化长期温度变化系列(1764-2017)对意大利北部两个主要农业区的夏粮作物(玉米)、春小麦、冬小麦和四种不同藤蔓植物(多年生植物)的影响。为了开发谷物和葡萄的酚学模型,使用了1763年至2017年意大利北部米兰和博洛尼亚的最低(TDmin)和最高(TDmax)日温度。结果表明,小麦(春季和冬季)在生长季节中,气温每升高°C,生长期就会缩短13天。冬小麦的春化要求表明,气温的进一步升高将决定向超优范围的转变。随后春化完成的延迟导致籽粒灌浆阶段在温暖的条件下发生,并将进一步缩短,从而影响最终产量。在整个研究期间,葡萄藤中的冷藏积累达到了90%的有效冷藏。亮点-长期天气系列显示了多年来平均气温及其极端值的变化。-使用长期天气序列对谷物和多年生植物的酚学进行模拟,结果显示生长季节缩短,发育阶段发生变化气温高于作物生理阈值的天数增加,这对发育和衰老率有影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impact of long-term (1764-2017) air temperature on phenology of cereals and vines in two locations of northern Italy
Understanding how long-term temperature variability affects the phenology of the main agricultural crop is critical to develop targeted adaptation strategies to near and far future climate impacts. The objective of this study was to use crop phenology as a proxy to quantify the impact of a long-term temperature variability series (1764-2017) on a summer cereal crop (maize), spring wheat, winter wheat, and four different vines (perennials) in two locations representative of the main agricultural areas in northern Italy. To develop the phenological models for cereals and grapevines, the minimum (TDmin) and maximum (TDmax) daily temperatures for Milano and Bologna, northern Italy, from 1763 to 2017 were used. Results showed that wheat (spring and winter) has experienced a reduction in the growing period of 13 days for each °C of air temperature increase during the growing season. Vernalization requirements of winter wheat indicated that further increase in air temperature will determine a shift towards a supraoptimal range. The subsequent delay in vernalization fulfilment causes the grain filling phase to occur in warmer conditions and will be further shortened with consequences for final yield. Chilling accumulation in vines was fulfilled over the entire period under study with 90% effective chilling. Highlights - Long-term weather series show how the mean air temperature and its extremes have changed over the years. - Simulation of cereals and perennials phenology using long-term weather series showed a shortening of the growing season and a shift of developmental stages. - The number of days when the air temperature is above the crops’ physiological threshold increased, with implications for development and senescence rates.
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来源期刊
CiteScore
4.20
自引率
4.50%
发文量
25
审稿时长
10 weeks
期刊介绍: The Italian Journal of Agronomy (IJA) is the official journal of the Italian Society for Agronomy. It publishes quarterly original articles and reviews reporting experimental and theoretical contributions to agronomy and crop science, with main emphasis on original articles from Italy and countries having similar agricultural conditions. The journal deals with all aspects of Agricultural and Environmental Sciences, the interactions between cropping systems and sustainable development. Multidisciplinary articles that bridge agronomy with ecology, environmental and social sciences are also welcome.
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