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Sustainable Agriculture—Enhancing Environmental Benefits, Food Nutritional Quality and Building Crop Resilience to Abiotic and Biotic Stresses

机译:可持续农业—增强环境效益,食品营养质量并增强作物对非生物和生物胁迫的适应力

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Feeding nutrition-dense food to future world populations presents agriculture with enormous challenges as estimates indicate that crop production must as much as double. Crop production cannot be increased to meet this challenge simply by increasing land acreage or using past agricultural intensification methods. Food production doubled in the past through substantial use of synthetic fertilizer, pesticides, and irrigation, all at significant environmental cost. Future production of nutrition-dense food will require next-generation crop production systems with decreased reliance on synthetic fertilizer and pesticide. Here, we present three case studies detailing the development of cover crops and plant-beneficial microbes for sustainable, next-generation small grain, tomato, and oilseed rape production systems. Cover crops imparted weed and pathogen control and decreased soil erosion and loss of soil nitrogen, phosphorus and carbon, while plant-beneficial microbes provided disease control and phosphorus fertility. However, yield in these next-generation crop production systems at best approximated that associated with current production systems. We argue here that to substantially increase agricultural productivity, new crop germplasm needs to be developed with enhanced nutritional content and enhanced tolerance to abiotic and biotic stress. This will require using all available technologies, including intensified genetic engineering tools, in the next-generation cropping systems.
机译:据估计,向未来的世界人口提供营养丰富的食物给农业带来了巨大的挑战,因为估计表明,农作物的产量必须增加一倍。仅仅通过增加土地面积或使用过去的农业集约化方法就无法增加作物产量来应对这一挑战。过去,通过大量使用合成肥料,杀虫剂和灌溉,粮食产量翻了一番,而这一切都大大降低了环境成本。未来营养密集型食品的生产将需要下一代作物生产系统,该系统将减少对合成肥料和农药的依赖。在这里,我们提供了三个案例研究,详细介绍了可持续的下一代小谷物,番茄和油菜生产系统的覆盖作物和有益植物的微生物的发展。覆盖作物可以控制杂草和病原体,减少土壤侵蚀,减少土壤氮,磷和碳的流失,而有益植物的微生物则可以控制疾病和提高磷的肥力。但是,这些下一代农作物生产系统的产量最多只能与当前生产系统相关。在这里,我们认为要大幅提高农业生产力,就需要开发新的作物种质,其营养成分应增加,对非生物和生物胁迫的耐受性也应提高。这将需要在下一代种植系统中使用所有可用技术,包括强化基因工程工具。

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