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首页> 外文期刊>The Journal of Applied Ecology >Leveraging functional traits of cover crops to coordinate crop productivity and soil health
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Leveraging functional traits of cover crops to coordinate crop productivity and soil health

机译:利用覆盖作物的功能性状来协调作物生产力和土壤健康

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Abstract Plants act as ecosystem engineers playing fundamental roles in steering their surroundings, including soil abiotic and biotic conditions, soil organisms, and the complex soil food web they comprise. Trait‐based approaches have been considered a ‘Holy Grail’ in linking plants to ecosystem functions, but the mechanistic relationship between plant traits and the soil food web as an indicator of soil health remains poorly understood. We examined this relationship for 16 cover crop species differing in leaf and root traits in a field experiment where corn, Zea mays was the main crop. Based on functional traits, the cover crop species were categorized into two ecological strategies at either end of the resource acquisitive‐conservative spectrum. We investigated the effects of cover crop ecological strategies on corn productivity and soil health. We used soil nematodes as an indicator of soil health and analysed soil physico‐chemical properties and microbial community activities. We found that acquisitive cover crops supported higher soil resource availability, bacterial energy channels in the soil food web, and greater corn productivity than conservative cover crops. In contrast, conservative cover crops supported higher abundances of fungivores and omni‐carnivores than acquisitive cover crop, which reflected a more structured and complex soil food web, implying a healthier soil ecosystem. Conservative cover crops also increased corn productivity compared to the no cover crop control treatment. Synthesis and applications. Collectively, this work shows that cover crops with distinct ecological strategies had their own strengths to enhance ecosystem functions: acquisitive and conservative cover crops improved crop productivity and soil health, respectively. These results indicates that farmers and policy makers can make trait‐based choices in selecting cover crop best serving the local needs. This points to a win‐win solution for food production and ecosystem sustainability.
机译:摘要植物作为生态系统工程师基本角色转向他们的环境,包括土壤非生物和生物条件,土壤生物和复杂的土壤食物网他们组成。认为是一个“圣杯”在连接工厂生态系统功能,但机械的植物特征和土壤之间的关系食物网作为土壤健康的指标仍然存在知之甚少。16在叶和覆盖作物种类不同根源特质在田间试验,玉米、玉蜀黍属玉米是主要的农作物。特征,覆盖作物物种分类成两个生态策略的两端资源贪婪还是保守的频谱。我们研究了覆盖作物的影响对玉米生产力和生态策略土壤健康。土壤健康和分析了土壤的指示器物理化学性质和微生物社区活动。覆盖作物支持更高的土壤资源可用性、细菌能源通道土壤食物网和玉米生产力大于保守的覆盖作物。保守派支持更高的覆盖作物食真菌丰度和omni食肉动物比贪婪覆盖作物,这反映了更多结构化和复杂的土壤食物网,暗示健康的土壤生态系统。也增加了玉米作物生产力相比没有覆盖作物控制治疗。和应用程序。覆盖作物,不同的生态有自己的优势,加强战略生态系统功能:贪婪和保守提高作物生产力和土壤覆盖作物健康,分别。农民和政策制定者基于特征量的选择在选择最好的覆盖作物服务于当地的需求。食品生产和生态系统的解决方案可持续性。

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