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首页> 外文期刊>The Journal of Applied Ecology >Agricultural intensification and the functional capacity of soil microbes on smallholder African farms
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Agricultural intensification and the functional capacity of soil microbes on smallholder African farms

机译:农业集约化和功能土壤微生物在小农非洲的能力农场

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Fertilization may impact ecosystem processes that sustain agriculture, such as nutrient cycling, by altering the composition of soil microbial communities that regulate such processes. These processes are crucial to low-input, smallholder tropical agriculture, which supports 900million of the world's poorest people. Yet little is known about how efforts to increase crop yield on such farms will affect the capacity of soil microbial communities to carry out ecosystem processes. We studied the diversity and functional capacity of microbial communities on smallholder farms in western Kenya. We measured functional capacity as the abundance of functional genes involved in several components of nutrient cycling as well as catabolism of multiple carbon substrates; taxonomic diversity was measured using metagenomic sequencing. Diversity and functional capacity were measured on short-term, experimental mineral fertilizer addition plots and on actively managed farms that have maintained for at least seven years a management strategy of low mineral fertilization, high mineral fertilization, or high fertilization combined with legume rotations. Soil bacterial diversity decreased with mineral fertilizer addition, with a community shift towards taxa that thrive in high-resource conditions. This taxonomic response did not correspond with decreased microbial functional capacity. Instead, functional capacity was increased, along with yields, when fertilizers were combined with legume rotations that add organic matter to soil.Policy implications. Mineral fertilizer use is associated with lower soil microbial diversity on smallholder farms, but not associated with changes in microbial functional capacity. Functional capacity is highest, along with yields, when mineral fertilizers are paired with legume rotations. Our findings suggest that this type of agroforestry can be an important strategy for maintaining the long-term functional capacity of soil microbes as well as increasing crop yields on smallholder farms. These observations support proposals to achieve long-term food production targets in sub-Saharan Africa by combining mineral fertilizers with organic inputs.
机译:受精过程,可能会影响生态系统维持农业、营养循环等改变土壤微生物的组成社区管理这些过程。过程是至关重要的低投入,小农热带农业,支持9亿世界上最穷的人。了解如何提高作物产量的努力这样的农场将影响土壤的能力微生物群落进行生态系统流程。微生物群落的功能能力小农农场在肯尼亚西部。功能丰富的能力功能基因参与了几个组件养分循环以及分解代谢多个碳基质;测量使用宏基因组测序。多样性和功能能力测定在短期实验矿物肥料除了情节和积极管理农场保持至少七年吗管理策略的低矿物受精,高矿物受精,或高施肥结合豆类旋转。多样性减少矿物肥料之外,社区转向类群张来武条件下茁壮成长。不符合分类响应减少微生物功能的能力。功能性能力增加,收益率,当肥料结合豆类旋转,添加有机物质土壤。降低土壤微生物多样性在小农场,但并不相关微生物功能能力的变化。功能性能力最高,收益率,当矿物肥料搭配豆类旋转。类型的农林复合经营是一个重要的策略维持长期的功能能力土壤微生物以及提高作物收益率小农农场。支持提案实现长期的食物在撒哈拉以南非洲地区的生产目标结合无机和有机肥料输入。

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