Systems Thinking, Mapping and Change in Food and Agriculture

IF 1.8 Q2 ECONOMICS
D. Dentoni, C. Cucchi, Marija Roglic, R. Lubberink, Rahmin Bender-Salazar, Timothy Manyise
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引用次数: 2

Abstract

Societal actors across scales and geographies increasingly demand visual applications of systems thinking – the process of understanding and changing the reality of a system by considering its whole set of interdependencies – to address complex problems affecting food and agriculture. Yet, despite the wide offer of systems mapping tools, there is still little guidance for managers, policy-makers, civil society and changemakers in food and agriculture on how to choose, combine and use these tools on the basis of a sufficiently deep understanding of socio-ecological systems. Unfortunately, actors seeking to address complex problems with inadequate understandings of systems often have limited influence on the socio-ecological systems they inhabit, and sometimes even generate unintended negative consequences. Hence, we first review, discuss and exemplify seven key features of systems that should be – but rarely have been – incorporated in strategic decisions in the agri-food sector: interdependency, level-multiplicity, dynamism, path dependency, self-organization, non-linearity and complex causality. Second, on the basis of these features, we propose a collective process to systems mapping that grounds on the notion that the configuration of problems (i.e., how multiple issues entangle with each other) and the configuration of actors (i.e., how multiple actors relate to each other and share resources) represent two sides of the same coin. Third, we provide implications for societal actors - including decision-makers, trainers and facilitators - using systems mapping to trigger or accelerate systems change in five purposive ways: targeting multiple goals; generating ripple effects; mitigating unintended consequences; tackling systemic constraints, and collaborating with unconventional partners.
粮食和农业的系统思考、制图和变化
不同规模和地域的社会行动者越来越需要系统思维的视觉应用——通过考虑系统的全部相互依赖关系来理解和改变系统现实的过程——以解决影响粮食和农业的复杂问题。然而,尽管提供了广泛的系统绘图工具,但在充分了解社会生态系统的基础上,对粮食和农业领域的管理者、决策者、民间社会和变革者如何选择、组合和使用这些工具的指导仍然很少。不幸的是,试图解决复杂问题但对系统理解不足的行为体往往对其所处的社会生态系统影响有限,有时甚至会产生意想不到的负面后果。因此,我们首先回顾、讨论并举例说明了应该(但很少)纳入农业食品部门战略决策的系统的七个关键特征:相互依赖性、水平多样性、动态性、路径依赖性、自组织、非线性和复杂因果关系。其次,在这些特征的基础上,我们提出了一个系统映射的集体过程,该过程基于这样的概念,即问题的配置(即多个问题如何相互纠缠)和参与者的配置(即多个参与者如何相互关联并共享资源)代表同一枚硬币的两面。第三,我们为社会行为者(包括决策者、培训师和促进者)提供了启示,利用系统映射以五种有目的的方式触发或加速系统变化:针对多个目标;产生涟漪效应的;减轻意外后果;解决系统性限制,与非传统合作伙伴合作。
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来源期刊
CiteScore
2.80
自引率
14.30%
发文量
10
审稿时长
8 weeks
期刊介绍: The journal Bio-based and Applied Economics (BAE) provides a forum for presentation and discussion of applied research in the field of bio-based sectors and related policies, informing evidence-based decision-making and policy-making. It intends to provide a scholarly source of theoretical and applied studies while remaining widely accessible for non-researchers. BAE seeks applied contributions on the economics of bio-based industries, such as agriculture, forestry, fishery and food, dealing with any related disciplines, such as resource and environmental economics, consumer studies, regional economics, innovation and development economics. Beside well-established fields of research related to these sectors, BAE aims in particular to explore cross-sectoral, recent and emerging themes characterizing the integrated management of biological resources, bio-based industries and sustainable development of rural areas. A special attention is also paid to the linkages between local and international dimensions.
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