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Allium cepa L. Inoculation with a Consortium of Plant Growth-Promoting Bacteria: Effects on Plant Growth and Development and Soil Fertility Status and Microbial Community

机译:Allium cepa L.与植物生长促进细菌的联盟接种:对植物生长和发育和土壤肥力状态和微生物群落的影响

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The present work was aimed at investigating the effects of a four strains consortium—Azospirillum brasilense, Gluconacetobacter diazotrophicus, Herbaspirillum seropedicae, and Burkholderia ambifaria—on crops of Allium cepa L. and its soil health. The bacterial consortium was inoculated on seeds of two different onion varieties; inoculated seeds and control ones (treated with autoclaved inoculum) were sown in open-field and followed until harvest. Plant growth development parameters, as well as soil physico-chemical and molecular profiles (DNA extraction and 16S community sequencing on the Mi-Seq Illumina platform), were investigated. The results showed a positive influence of bacterial application on plant growth, with increased plant height (+18%), total chlorophylls (+42%), crop yields (+13%), and bulbs dry matter (+3%) than the control. The differences between control and treated experimental conditions were also underlined in the bulb extracts in terms of total phenolic contents (+25%) and antioxidant activities (+20%). Soil fertility and microbial community structure and diversity were also positively affected by the bacterial inoculum. At harvest, the soil with the presence of the bacterial consortium showed an increase of total organic carbon, organic matter, and available P and higher concentrations of nutrients than control. The ecological indexes calculated on the molecular profiles showed that community diversity was positively affected by the bacterial treatment. The present work allowed to remark the effective use of plant growth-promoting bacteria as a valid fertilization strategy to improve yield in productive landscapes, whilst safeguarding soil biodiversity.
机译:目前的作品旨在调查四种菌株和Mdash的影响; Azospirlulululuense,Gluconacetobacter dizotrophicus,Herbaspirillum丝氨酸和伯克德列利亚Ambifaria&Mdash;在Calium Cepa L.及其土壤健康的作物。细菌联盟接种在两种不同洋葱品种的种子上;接种种子和对照组(用高压灭菌的接种物处理)在开放场中播种并遵循收获。研究了植物生长开发参数,以及土壤物理化学和分子谱(在MI-SEQ Illumina平台上的DNA提取和16S群落测序)。结果表明,细菌应用对植物生长的积极影响,植物高度增加(+ 18%),总叶绿素(+ 42%),作物产量(+ 13%),灯泡干物质(+ 3%)比控制。在总酚类内容物(+ 25%)和抗氧化活性(+ 20%)方面,对照和治疗的实验条件之间的差异也在灯泡提取物中加下划线。土壤肥力和微生物群落结构和多样性也受细菌接种物的积极影响。在收获时,具有细菌联盟的存在的土壤显示出总有机碳,有机物和可用的P和更高浓度的营养物质的增加。在分子型材上计算的生态指标表明,群落多样性受细菌治疗的积极影响。目前的作品允许促进植物生长促进细菌的有效使用,作为有效的施肥战略,以提高生产景观的产量,同时维护土壤生物多样性。

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