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西班牙气候变化下玉米产量水分限制的时空动态

Spatio-temporal dynamics of maize yield water constraints under climate change in Spain.

作者信息

Ferrero Rosana, Lima Mauricio, Gonzalez-Andujar Jose Luis

机构信息

Departamento Protección de Cultivos, Instituto de Agricultura Sostenible, Consejo Superior de Investigaciones Científicos (CSIC), Córdoba, Spain; Center of Applied Ecology and Sustainability (CAPES), Santiago, Chile.

Departamento de Ecología, Pontificia Universidad Católica de Chile, Santiago, Chile; Laboratorio Internacional de Cambio Global, LINCG (CSIC-PUC), Santiago, Chile; Center of Applied Ecology and Sustainability (CAPES), Santiago, Chile.

出版信息

PLoS One. 2014 May 30;9(5):e98220. doi: 10.1371/journal.pone.0098220. eCollection 2014.

Abstract

Many studies have analyzed the impact of climate change on crop productivity, but comparing the performance of water management systems has rarely been explored. Because water supply and crop demand in agro-systems may be affected by global climate change in shaping the spatial patterns of agricultural production, we should evaluate how and where irrigation practices are effective in mitigating climate change effects. Here we have constructed simple, general models, based on biological mechanisms and a theoretical framework, which could be useful in explaining and predicting crop productivity dynamics. We have studied maize in irrigated and rain-fed systems at a provincial scale, from 1996 to 2009 in Spain, one of the most prominent "hot-spots" in future climate change projections. Our new approach allowed us to: (1) evaluate new structural properties such as the stability of crop yield dynamics, (2) detect nonlinear responses to climate change (thresholds and discontinuities), challenging the usual linear way of thinking, and (3) examine spatial patterns of yield losses due to water constraints and identify clusters of provinces that have been negatively affected by warming. We have reduced the uncertainty associated with climate change impacts on maize productivity by improving the understanding of the relative contributions of individual factors and providing a better spatial comprehension of the key processes. We have identified water stress and water management systems as being key causes of the yield gap, and detected vulnerable regions where efforts in research and policy should be prioritized in order to increase maize productivity.

摘要

许多研究分析了气候变化对作物生产力的影响,但比较水管理系统的性能却鲜有探讨。由于农业系统中的供水和作物需求可能会受到全球气候变化的影响,从而塑造农业生产的空间格局,因此我们应该评估灌溉措施在何处以及如何有效地减轻气候变化的影响。在此,我们基于生物学机制和理论框架构建了简单通用的模型,这些模型有助于解释和预测作物生产力动态。我们在西班牙省级尺度上研究了1996年至2009年灌溉系统和雨养系统中的玉米,西班牙是未来气候变化预测中最突出的“热点”之一。我们的新方法使我们能够:(1)评估新的结构特性,如作物产量动态的稳定性;(2)检测对气候变化的非线性响应(阈值和不连续性),挑战通常的线性思维方式;(3)研究因水分限制导致的产量损失的空间格局,并确定受变暖负面影响的省份集群。通过增进对各个因素相对贡献的理解并更好地从空间上把握关键过程,我们降低了与气候变化对玉米生产力影响相关的不确定性。我们已确定水分胁迫和水管理系统是产量差距的关键成因,并发现了一些脆弱地区,在这些地区应优先开展研究和制定政策,以提高玉米生产力。

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