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Consistent effects of nitrogen fertilization on soil bacterial communities in black soils for two crop seasons in China

机译:氮肥对中国两个作物季黑土土壤细菌群落的一致影响

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摘要

Long-term use of inorganic nitrogen (N) fertilization has greatly influenced the bacterial community in black soil of northeast China. It is unclear how N affects the bacterial community in two successive crop seasons in the same field for this soil type. We sampled soils from a long-term fertilizer experimental field in Harbin city with three N gradients. We applied sequencing and quantitative PCR targeting at the 16S rRNA gene to examine shifts in bacterial communities and test consistent shifts and driving-factors bacterial responses to elevated N additions. N addition decreased soil pH and bacterial 16S rDNA copy numbers, and increased soil N and crop yield. N addition consistently decreased bacterial diversity and altered bacterial community composition, by increasing the relative abundance of Proteobacteria, and decreasing that of Acidobacteria and Nitrospirae in both seasons. Consistent changes in the abundant classes and genera, and the structure of the bacterial communities across both seasons were observed. Our results suggest that increases in N inputs had consistent effects on the richness, diversity and composition of soil bacterial communities across the crop seasons in two continuous years, and the N addition and the subsequent edaphic changes were important factors in shaping bacterial community structures.
机译:长期使用无机氮肥对东北黑土细菌群落产生了很大影响。目前尚不清楚在这种土壤类型下,N在同一田地的两个连续作物季节中如何影响细菌群落。我们从哈尔滨市一个长期肥料试验田的土壤中取样了三个氮梯度。我们针对16S rRNA基因应用了测序和定量PCR,以检查细菌群落的变化,并测试一致的变化和驱动因素对高氮添加的细菌响应。氮的添加会降低土壤的pH值和细菌16S rDNA的拷贝数,并增加土壤的氮和作物的产量。通过增加变形杆菌的相对丰度,并降低两个季节的酸性细菌和硝化螺旋菌的相对丰度,氮的添加持续降低细菌多样性并改变细菌群落组成。在两个季节中观察到丰富的种类和属的一致变化以及细菌群落的结构。我们的结果表明,连续两年来,氮素输入量的增加对整个作物季节土壤细菌群落的丰富度,多样性和组成具有一致的影响,而氮素的添加和随后的土壤水质变化是塑造细菌群落结构的重要因素。

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