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Towards Nutrition-Sensitive Agriculture: An evaluation of biocontrol effects, nutritional value, and ecological impact of bacterial inoculants

机译:朝向营养敏感的农业:对细菌偶像剂的生物控制效应,营养价值和生态影响的评估

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摘要

Nutrition-Sensitive Agriculture (NSA) is a novel concept in agriculture that considers not only yield, but also nutritional value of produce, sustainability of production, and ecological impact of agriculture. In accordance with its goals. NSA would benefit from applying microbial-based products as they are deemed more sustainable than their synthetic counterparts. This study characterized 3 plant-beneficial bacterial strains (Paenibacillus pasadenensis strain R16, Pseudomonas syringae strain 260-02, Bacillus amyloliquefaciens strain CC2) on their biocontrol activity and effect on nutritional and texture quality of romaine lettuce plants (Lactuca sativa) in greenhouse. The pathogens used in the trials are Rhizoctonia solani and Pythium ultimum. The obtained results indicate that strain R16 had a significant ability to cause a statistically significant reduction in the symptoms caused by both P. ultimum (reduction of 32%) and R. solani (reduction of 42%), while the other two strains showed a less efficient biocontrol ability. Indices of the nutritional quality (content in phenols, carotenoids and chlorophyll) were unaffected by the treatments, indicating that the product was equivalent to that obtained without using the bacteria, while the texture of the leaves benefits from the biocontrol treatments. In particular, the mechanical resistance of the leaves was significantly higher in non-treated plants affected by R. solani but was restored to the values of healthy plants when the bacterial inoculants were present as well. The ecological impact was evaluated by characterizing the bacterial microbiota in bulk soil, rhizosphere, and root in the presence or absence of the inoculants. The composition of the microbiota. analyzed with a Unifrac model to describe beta-diversity, was radically different in the rhizosphere and the root endosphere among treatments, while the bulk soil formed a single cluster regardless of treatment, indicating that the use of these treatments did not have an ecological impact outside of the plant.
机译:营养敏感农业(NSA)是农业的新概念,不仅考虑产量,也认为生产,生产可持续性以及农业的生态影响。按照其目标。 NSA将受益于应用基于微生物的产品,因为它们被视为比其合成对应物更可持续。本研究表征了3种植物 - 有益的细菌菌株(Paenibacillus肺癌菌株R16,假单胞菌菌株260-02,芽孢杆菌淀粉醇素菌株CC2)对它们的生物控制活性和对温室(Lactuca Sativa)的营养和质量质量的影响。试验中使用的病原体是Rhizoctonia solani和茄子的ULTimum。得到的结果表明,菌株R16具有显着降低P. Ultimum(减少32%)和R.Solani(减少42%)引起的统计上显着降低的能力显着降低,而另外两个菌株显示出A.较低的生物控制能力。营养质量(酚类,类胡萝卜素和叶绿素中含量)的指数不受处理的影响,表明产物相当于在不使用细菌的情况下获得的产品,而叶片的质地受益于生物控制治疗。特别地,在受R.Solani影响的未处理植物中,叶片的机械抗性显着较高,但是当细菌涂体也恢复到健康植物的值。通过在散装土壤,根际的细菌微生物群中表征细菌微生物和抗体在存在或不存在的情况下,评估生态影响。微生物群的组成。用紫外线模型进行分析以描述β-多样性,在根际和治疗中的根腹层均可差异,而散装土壤形成单一的群体,无论治疗如何,表明这些治疗的使用都没有外面的生态影响植物。

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  • 来源
    《The Science of the Total Environment》 |2020年第jul1期|138127.1-138127.11|共11页
  • 作者单位

    Department of Agricultural and Environmental Sciences - Production Landscape Agroenergy Universita degli Studi di Milano Milan Italy;

    Department of Environmental Science and Policy Universita degli Studi di Milano Milan Italy Department of Food Environmental and Nutritional Sciences Universita degli Studi di Milano Milan Italy;

    Department of Agricultural and Environmental Sciences - Production Landscape Agroenergy Universita degli Studi di Milano Milan Italy;

    Department of Agricultural and Environmental Sciences - Production Landscape Agroenergy Universita degli Studi di Milano Milan Italy;

    Department of Agricultural and Environmental Sciences - Production Landscape Agroenergy Universita degli Studi di Milano Milan Italy Soil Sciences Department Agriculture Faculty Lorestan University Khorramabad Iran;

    Department of Agricultural and Environmental Sciences - Production Landscape Agroenergy Universita degli Studi di Milano Milan Italy;

    Department of Agricultural and Environmental Sciences - Production Landscape Agroenergy Universita degli Studi di Milano Milan Italy;

    Department of Environmental Science and Policy Universita degli Studi di Milano Milan Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Nutrition-sensitive agriculture; Biocontrol; Microbiota; Lettuce; Texture; Nutritional value;

    机译:营养敏感的农业;生物控制;微生物群;生菜;质地;营养价值;

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