首页> 外文期刊>The Science of the Total Environment >Leaf mineral content govern microbial community structure in the phyllosphere of spinach (Spincia oleracea) and rocket (Diplotaxis tenuifolia)
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Leaf mineral content govern microbial community structure in the phyllosphere of spinach (Spincia oleracea) and rocket (Diplotaxis tenuifolia)

机译:叶矿物质含量治理菠菜(Spincia Oleracea)和火箭(Diplotaxis Tenuifolia)的微生物群落结构

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摘要

The plant microbiome is an important factor for plant health and productivity. While the impact of nitrogen (N) availability for plant growth and development is well established, its influence on the microbial phyllosphere community structure is unknown. We hypothesize that nitrogen impacts the growth and abundance of several microorganisms on the leaf surface. The bacterial and fungal communities of baby leaf spinach (Spinacia oleracea), and rocket (Diplotaxis tenuifolia) were investigated in a field trial for two years in a commercial setting. Nitrogen fertilizerwas tested in four doses (basic nitrogen, basic + suboptimal, basic + commercial, basic + exxcess) with six replicates in each. Culture-independent (Illumina sequencing) and culture-dependent (viable count and identification of bacterial isolates) community studies were combined with monitoring of plant physiology and site weather conditions. This study found that alpha diversity of bacterial communities decreased in response to increasing nitrogen fertilizer dose, whereas viable counts showed no differences. Correspondingly, fungal communities of the spinach phyllosphere showed a decreasing pattern, whereas the decreasing diversity of fungal communities of rocket was not significant. Plant species and effects of annual variations on microbiome structure were observed for bacterial and fungal communities on both spinach and rocket. This study provides novel insights on the impact of nitrogen fertilizer regime on a nutrient scarce habitat, the phyllosphere. (C) 2019 The Authors. Published by Elsevier B.V.
机译:植物微生物组是植物健康和生产力的重要因素。虽然氮气(n)植物生长和发展的可用性的影响得到明确,但其对微生物局部群落结构的影响是未知的。我们假设氮气会影响叶片表面上几种微生物的生长和丰度。在商业环境中,研究了婴儿叶菠菜(Spinacia Oleracea)和火箭(Diplotaxis Tenuifolia)的细菌和真菌社区,并在商业环境中进行了两年。用六剂(碱性氮气,基本+次优,基本+商业,基本+ Excexcess)测试的氮肥和氮气肥料有六个重复。与植物生理学和遗址的监测相结合了与培养无关(Illumina测序)和培养依赖性(可行的计数和鉴定和鉴定细菌分离株)社区研究。该研究发现,αα多样性响应于增加的氮肥剂量而降低,而可行的计数显示出没有差异。相应地,菠菜文学的真菌社区表现出一种降低的模式,而火箭的真菌社区的多样性降低并不显着。菠菜和火箭对细菌和真菌社区观察到微生物组结构的植物物种和对微生物组结构的影响。本研究为氮肥制度对营养稀缺性栖息地的影响,提供了新的洞察力。 (c)2019年作者。由elsevier b.v出版。

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  • 来源
    《The Science of the Total Environment》 |2019年第jul20期|501-512|共12页
  • 作者单位

    Swedish Univ Agr Sci Dept Biosyst & Technol Microbial Hort Lab POB 103 SE-23053 Alnarp Sweden;

    Swedish Univ Agr Sci Dept Biosyst & Technol Microbial Hort Lab POB 103 SE-23053 Alnarp Sweden;

    Swedish Univ Agr Sci Dept Biosyst & Technol Microbial Hort Lab POB 103 SE-23053 Alnarp Sweden;

    Swedish Univ Agr Sci Dept Biosyst & Technol Microbial Hort Lab POB 103 SE-23053 Alnarp Sweden;

    Swedish Univ Agr Sci Dept Biosyst & Technol Microbial Hort Lab POB 103 SE-23053 Alnarp Sweden;

    Swedish Univ Agr Sci Dept Biosyst & Technol Microbial Hort Lab POB 103 SE-23053 Alnarp Sweden;

    Swedish Univ Agr Sci Dept Biosyst & Technol Microbial Hort Lab POB 103 SE-23053 Alnarp Sweden;

    Swedish Univ Agr Sci Dept Biosyst & Technol Microbial Hort Lab POB 103 SE-23053 Alnarp Sweden;

    LTH Lund Univ Dept Food Technol Box 124 SE-22100 Lund Sweden;

    LTH Lund Univ Dept Food Technol Box 124 SE-22100 Lund Sweden;

    Swedish Univ Agr Sci Dept Plant Protect Biol POB 102 SE-23053 Alnarp Sweden;

    Swedish Univ Agr Sci Dept Biosyst & Technol Microbial Hort Lab POB 103 SE-23053 Alnarp Sweden;

    Swedish Univ Agr Sci Dept Biosyst & Technol Microbial Hort Lab POB 103 SE-23053 Alnarp Sweden;

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

    Metagenomics; Plant-microbe interactions; Phyllosphere; Nitrogen fertilizer; Leafy vegetables; Microbial diversity;

    机译:MetageNomics;植物微生物相互作用;文化;氮肥;叶形蔬菜;微生物多样性;

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