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首页> 外文期刊>Ecology and Evolution >Complex agro‐ecosystems for food security in a changing climate
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Complex agro‐ecosystems for food security in a changing climate

机译:应对气候变化的复杂农业生态系统,实现粮食安全

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摘要

AbstractAttempts to increase food crop yields by intensifying agricultural systems using high inputs of nonrenewable resources and chemicals frequently lead to de-gradation of natural resources, whereas most technological innovations are not accessible for smallholders that represent the majority of farmers world wide. Alternatively, cocultures consisting of assemblages of plant and animal species can support ecological processes of nutrient cycling and pest control, which may lead to increasing yields and declining susceptibility to extreme weather conditions with increasing complexity of the systems. Here we show that enhancing the complexity of a rice production system by adding combinations of compost, azolla, ducks, and fish resulted in strongly increased grain yields and revenues in a season with extremely adverse weather conditions on East Java, Indonesia. We found that azolla, duck, and fish increased plant nutrient content, tillering and leaf area expansion, and strongly reduced the density of six different pests. In the most complex system comprising all components the highest grain yield was obtained. The net revenues of this system from sales of rice grain, fish, and ducks, after correction for extra costs, were 114% higher than rice cultivation with only compost as fertilizer. These results provide more insight in the agro-ecological processes and demonstrate how complex agricultural systems can contribute to food security in a changing climate. If smallholders can be trained to manage these systems and are supported for initial investments by credits, their livelihoods can be improved while producing in an ecologically benign way.
机译:摘要试图通过大量使用不可再生资源和化学物质来强化农业系统来提高粮食作物的产量,这通常会导致自然资源的退化,而代表全世界大多数农民的小农无法获得大多数技术创新。或者,由动植物物种组成的共培养可以支持养分循环和病虫害防治的生态过程,这可能导致产量增加和对极端天气条件的敏感性下降,同时系统的复杂性也随之增加。在这里,我们表明,通过添加堆肥,偶氮,鸭和鱼的组合来增强稻米生产系统的复杂性,在印尼东爪哇的天气极为不利的季节中,谷物产量和收入将大大增加。我们发现,偶氮,鸭和鱼可增加植物养分含量,分till和叶面积扩大,并大大降低了六种不同害虫的密度。在包含所有组分的最复杂的系统中,可以获得最高的谷物产量。在扣除额外费用后,该系统从稻谷,鱼类和鸭子的销售中获得的净收入比仅以堆肥作为肥料的水稻种植高114%。这些结果提供了对农业生态过程的更多见解,并证明了复杂的农业系统如何在不断变化的气候中促进粮食安全。如果小农户可以接受培训来管理这些系统,并得到信贷的初始投资支持,那么他们的生计就可以得到改善,同时以生态友好的方式进行生产。

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