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首页> 外文期刊>The Journal of Applied Ecology >Plant functional traits in agroecosystems: a blueprint for research
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Plant functional traits in agroecosystems: a blueprint for research

机译:植物功能性状在农业生态系统:一个研究的蓝图

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Functional trait-based ecological research has been instrumental in advancing our understanding of natural plant community dynamics. However, to date, principles of functional trait ecology have not been widely applied to agricultural research and management. Here, we discuss why and how a functional trait approach - distinct from a traditional agronomic trait approach that focuses strictly on crop yield components - can provide a valuable framework for agricultural research. We illustrate these points with an emphasis on commodity crops. The literature suggests a key role for functional trait-based research in understanding the causes and consequences of changes in agroecosystem structure and function. This includes novel approaches to understanding crop breeding and productivity, agroecosystem dynamics and non-crop biodiversity maintenance, the contributions of agroecosystems to global net primary productivity and other biogeochemical cycles, and agricultural vulnerability to climate change. We propose that a key step in advancing trait-based agricultural research is the consolidation of functional trait data for the world's most common crop and fodder species, the main commodities on approximate to 12 billion ha of land. Using Coffea arabica as an example, we show there is strong potential to populate a comprehensive data base of crop functional trait data. For C.arabica, there exist hundreds of observations for ecologically important leaf economics' and root economics' traits, either in smaller data bases or peer-reviewed studies, but these have not been consolidated. A similar opportunity for functional trait data consolidation exists for many of the world's most common crops.Synthesis and applications. A unified functional trait data base for just 65 of the world's most common agricultural crops can be used to provide baseline evaluations of the functional diversity across croplands covering approximate to 81% of the Earth's land surface. This functional trait data, and other trait-based research, could further be used to evaluate how changes in interspecific and intraspecific crop diversity are mechanistically linked with alterations in agroecosystem function. Ultimately, trait-based research that examines the causes and consequences of agricultural homogenization may contribute to more ecologically informed management of agricultural diversity, from genetic through to global scales.
机译:功能叫生态研究在推进我们的理解自然植物群落的动态。目前为止,生态功能特征的原则没有广泛应用于农业研究和管理。——不同于一个功能特征的方法传统的农艺性状的方法,集中严格对作物产量组件——可以提供有价值的农业研究的框架。说明这些问题重点大宗商品作物。角色功能叫实验研究理解的原因和后果农业生态系统结构和功能的变化。这包括新方法的理解作物育种和生产力,农业生态系统动力学和水分散性生物多样性维护,农业生态系统的贡献全球净初级生产力和其他生物地球化学周期,和农业气候脆弱性改变。叫农业研究的整合的功能特征数据世界上最常见的作物和饲料种类,主要大宗商品近似120亿公顷的土地。显示填充有强大的潜力农作物功能特征的全面的数据基础数据。观察生态重要的叶经济学和根经济学特征,要么小数据基地或同行评议的研究,但是这些没有得到巩固。功能特征数据的机会许多世界上最合并存在常见的作物。统一的功能特征数据库仅为65世界上最常见的农作物用于提供基线评估的在农田覆盖功能多样性近似地球陆地表面的81%。这个功能特征数据,和其他的叫研究,可能会进一步被用来评估种间和种内作物的变化从力学上看与多样性改变农业生态系统的功能。最终,叫实验研究,研究农业的原因和后果均化可能导致更多生态农业的通知管理多样性,从基因到全球尺度。

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