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首页> 外文期刊>Journal of Geochemical Exploration: Journal of the Association of Exploration Geochemists >Rhizosphere microbial diversity as influenced by humic substance amendments and chemical composition of rhizodeposits
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Rhizosphere microbial diversity as influenced by humic substance amendments and chemical composition of rhizodeposits

机译:腐殖质修正剂和根茎化学成分对根际微生物多样性的影响

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The influence of humic substances (HS) on crops and soil microbial communities still lacks a complete understanding. The influence of HS on chemical composition of maize rhizodeposits and diversity of rhizosphere microbial communities was studied here in rhizobox systems. Eleven different HS were characterized by elemental analyses and ~(13)C-CPMAS NMR, and applied to the upper compartment of rhizobox systems cultivated with maize. Once a full rhizoplane was formed, the lower compartment of the rhizoboxes was sampled with a slicing device, in order to obtain rhizopshere (0-2 mm) and bulk (>10 mm) soil samples, which were subjected to chemical analyses of organic acids and sugars (pentoses and hexoses), bioassays with a luminescent biosensor for the detection and quantification of bioavailable C forms, and analyzed for bacterial diversity by means of PCR-DGGE fingerprint. Multivariate techniques were applied to assess correlations between the parameters involved and to assess the most relevant chemical drivers of rhizosphere microbial diversity. Results showed that the hydrophilic and poorly aromatic HS changed the pattern of sugars and organic acids released in the rhizosphere by maize roots, and this, in turn, affected the composition of rhizosphere microbial communities. Differences in chemical and microbiological composition were also found, but to a lesser extent, among bulk soil samples of different treatments, thus indicating that rhizodeposits can influence soil composition at several mm distance from the root plane. Multiple regression analyses suggested a prominent role of succinic and malic acid in shaping the diversity of microbial communities. The approach and results described here proved to be useful to test bioactivity of HS towards an agricultural crop, and identify correlations between chemical and microbiological constituents at the tri-phase soil-roots-microbes system.
机译:腐殖质(HS)对农作物和土壤微生物群落的影响仍然缺乏完全的了解。本文在根际系统中研究了HS对玉米根际沉积物化学成分和根际微生物群落多样性的影响。通过元素分析和〜(13)C-CPMAS NMR对11种不同的HS进行了表征,并将其应用于玉米栽培的根瘤菌系统的上部。一旦形成完整的根际平面,就用切片装置对根际盒子的下部隔室进行采样,以获得根际土壤(0-2 mm)和块状(> 10 mm)土壤样品,然后对其进行有机酸的化学分析。和糖(戊糖和己糖),具有发光生物传感器的生物测定法,用于检测和定量生物利用的C形式,并通过PCR-DGGE指纹分析细菌多样性。应用多元技术评估所涉及参数之间的相关性,并评估根际微生物多样性的最相关化学驱动因素。结果表明,亲水性和芳香性差的HS改变了玉米根部在根际释放的糖和有机酸的模式,进而影响了根际微生物群落的组成。在不同处理的散装土壤样品中也发现了化学和微生物组成的差异,但程度较小,这表明根状茎沉积可在距根平面几毫米的距离处影响土壤组成。多元回归分析表明,琥珀酸和苹果酸在塑造微生物群落多样性方面具有重要作用。事实证明,此处描述的方法和结果可用于测试HS对农作物的生物活性,并在三相土壤-根-微生物系统中识别化学和微生物成分之间的相关性。

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