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Fertilization rather than aggregate size fractions shape the nitrite-oxidizing microbial community in a Mollisol

机译:施肥而不是聚集尺寸级分形薄膜氧化亚硝酸氮素氧化微生物群落

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摘要

How nitrite-oxidizing bacteria (NOB) respond to long-term fertilization and variations in soil aggregate levels remains unclear. In this study, the potential nitrite oxidation activity (PNO), abundance, diversity, and community compositions of Nitrobacter- and Nitrospira-like NOB were examined in three aggregate fractions (2000-250, macroaggregate; 250-53, microaggregate; & 53 mu m, silt + clay) of a Mollisol under four fertilization regimes. NOB abundances were higher in macro- and micro-aggregates, and best explained by aggregate size variation. The PNO, Shannon diversity index and community composition of NOB were more affected by the fertilization regimes. We found PNO significantly correlated with the structure of Nitrospira-like NOB, followed by the abundances and Shannon diversity indexes of NOB. Soil aggregate phosphorus level, total potassium and NH4+ were associated with the NOB community structure. Our results suggested that PNO directly link to the variations for the abundance, diversity and community structure of NOB, which are regulated by the nutrient level in the microhabitat.
机译:氮石氧化细菌(NOB)如何应对长期施肥和土壤骨料水平的变化仍不清楚。在该研究中,在三个骨料分数(2000-250,大宏冷静的情况下,检查亚特杆菌和Nitrospira-Limb的潜在硝酸盐氧化活性(PNO),丰度,多样性和群落组成; 250-53,微见;& LT在四种施肥制度下,Mollisol的53 mu m,Silt +粘土)。宏观和微聚集体的NOB丰富的丰富度高,并且最好通过聚合大小变化解释。 PNO,Shannon多样性指数和NOB的社区构成受到受精制度的影响。我们发现PNO与尼硝基叶片的结构显着相关,其次是NOB的丰富和香农分集指数。土壤骨料水平,总钾和NH4 +与NOB社区结构有关。我们的结果表明,PNO直接链接到NOB的丰富,多样性和群落结构的变化,这受到微藻中营养水平的调节。

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