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通过增加卡罗来纳州的农业多样性和本地采购来建立有韧性的粮食系统。

Toward resilient food systems through increased agricultural diversity and local sourcing in the Carolinas.

作者信息

MacFall Janet, Lelekacs Joanna Massey, LeVasseur Todd, Moore Steve, Walker Jennifer

机构信息

1Elon University Center for Environmental Studies, Elon, NC USA.

Center for Environmental Farming Systems, Raleigh, NC USA.

出版信息

J Environ Stud Sci. 2015;5(4):608-622. doi: 10.1007/s13412-015-0321-1. Epub 2015 Sep 18.

Abstract

Biological and agricultural diversity are connected to food security through strengthened resilience to both anthropogenic and natural perturbations. Increased resilience to stress via increased biodiversity has been described in a number of natural systems. Diversity in food production can be considered on the following three levels: (a) genetic diversity as reflected in the range of cultivars which can be selected for production; (b) species diversity, captured through production of a wide range of crops on each farm; and (c) broad ecosystem diversity, described by the diversity of production between farms and within the broader food system. A network of locally based food producers and entrepreneurs provides opportunity for high diversity at each network stage, with increased adaptive capacity and the ability for rapid response to disturbance. We argue that production techniques that use carefully planned diverse plantings, such as biointensive cultivation, increase resilience by increased water use efficiency, yield and nutrient retention while reducing pressure from pests and pathogens. We present a model for a diverse, distributed food system in the North Carolina Piedmont and analyze an existing distributed network by a food hub in South Carolina. Through these models, we argue that a shift in the food network has the potential to increase local food security by having food more reliably available where it is needed and by contributing to local resilience through community economic development. The shift in food production and distribution systems serves multiple goals: When crop loss occurs, other crops still contribute to overall harvest, reducing net loss. Diverse on-farm production can support a more distributed network of food aggregators, processors, and markets than the current approach of large-scale consolidation. Finally, a distributed food supply network supported with diverse agricultural products can increase resilience by providing access to diversified markets for producers and improved food access to consumers with more food choices, while expanding the need for skilled jobs supporting the regionally based food industry.

摘要

生物多样性和农业多样性通过增强对人为和自然干扰的恢复力与粮食安全相联系。在许多自然系统中,已经描述了通过增加生物多样性来增强对压力的恢复力。粮食生产的多样性可以从以下三个层面来考虑:(a) 遗传多样性,体现在可供选择用于生产的品种范围;(b) 物种多样性,通过每个农场种植多种作物来体现;(c) 广泛的生态系统多样性,由农场之间以及更广泛的粮食系统内的生产多样性来描述。一个以当地为基础的粮食生产者和企业家网络为每个网络阶段的高度多样性提供了机会,同时增强了适应能力以及对干扰的快速反应能力。我们认为,使用精心规划的多样化种植的生产技术,如生物集约栽培,通过提高水分利用效率、产量和养分保持能力,同时减轻病虫害压力,增强了恢复力。我们提出了一个北卡罗来纳州皮埃蒙特多样化、分布式粮食系统的模型,并分析了南卡罗来纳州一个粮食枢纽现有的分布式网络。通过这些模型,我们认为粮食网络的转变有可能提高当地粮食安全,因为粮食在需要的地方更可靠地可得,并通过社区经济发展促进当地恢复力。粮食生产和分配系统的转变实现了多个目标:当作物损失发生时,其他作物仍能对总收成做出贡献,减少净损失。与当前大规模整合的方式相比,多样化的农场生产可以支持一个更分散的粮食聚合商、加工商和市场网络。最后,由多样化农产品支持的分布式粮食供应网络可以通过为生产者提供进入多样化市场的机会以及为消费者提供更多食物选择来改善粮食获取,同时增加对支持基于该地区的食品工业的熟练工作的需求,从而增强恢复力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/217a/7099336/6edf1b2e8c7a/13412_2015_321_Fig1_HTML.jpg

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