Dias Teresa, Dukes Angela, Antunes Pedro M
Algoma University, Sault Ste Marie, Ontario, P6A 2G4, Canada; Sault Ste Marie Innovation Centre, Sault Ste Marie, Ontario, P6A 2G4, Canada.
J Sci Food Agric. 2015 Feb;95(3):447-54. doi: 10.1002/jsfa.6565. Epub 2014 Feb 10.
There is an urgent need for novel agronomic improvements capable of boosting crop yields while alleviating environmental impacts. One such approach is the use of optimized crop rotations. However, a set of measurements that can serve as guiding principles for the design of crop rotations is lacking. Crop rotations take advantage of niche complementarity, enabling the optimization of nutrient use and the reduction of pests and specialist pathogen loads. However, despite the recognized importance of plant-soil microbial interactions and feedbacks for crop yield and soil health, this is ignored in the selection and management of crops for rotation systems. We review the literature and propose criteria for the design of crop rotations focusing on the roles of soil biota and feedback on crop productivity and soil health. We consider that identifying specific key organisms or consortia capable of influencing plant productivity is more important as a predictor of soil health and crop productivity than assessing the overall soil microbial diversity per se. As such, we propose that setting up soil feedback studies and applying genetic sequencing tools towards the development of soil biotic community databases has a strong potential to enable the establishment of improved soil health indicators for optimized crop rotations.
迫切需要能够提高作物产量同时减轻环境影响的新型农艺改进措施。一种这样的方法是使用优化的作物轮作。然而,缺乏一套可作为作物轮作设计指导原则的测量方法。作物轮作利用生态位互补性,能够优化养分利用并减少害虫和专性病原菌负荷。然而,尽管植物 - 土壤微生物相互作用和反馈对作物产量和土壤健康的重要性已得到认可,但在轮作系统作物的选择和管理中却被忽视。我们回顾了文献,并提出了作物轮作设计的标准,重点关注土壤生物群的作用以及对作物生产力和土壤健康的反馈。我们认为,识别能够影响植物生产力的特定关键生物体或群落,作为土壤健康和作物生产力的预测指标,比评估土壤微生物多样性本身更为重要。因此,我们建议开展土壤反馈研究并应用基因测序工具来建立土壤生物群落数据库,这很有可能为优化作物轮作建立更好的土壤健康指标。