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One-time nitrogen fertilization shifts switchgrass soil microbiomes within a context of larger spatial and temporal variation

机译:在较大的时空变化背景下一次性施氮可改变柳枝soil土壤微生物群落

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摘要

Soil microbiome responses to short-term nitrogen (N) inputs remain uncertain when compared with previous research that has focused on long-term fertilization responses. Here, we examined soil bacterial/archaeal and fungal communities pre- and post-N fertilization in an 8 year-old switchgrass field, in which twenty-four plots received N fertilization at three levels (0, 100, and 200 kg N ha-1 as NH4NO3) for the first time since planting. Soils were collected at two depths, 0–5 and 5–15 cm, for DNA extraction and amplicon sequencing of 16S rRNA genes and ITS regions for assessment of microbial community composition. Baseline assessments prior to fertilization revealed no significant pre-existing divergence in either bacterial/archaeal or fungal communities across plots. The one-time N fertilizations increased switchgrass yields and tissue N content, and the added N was nearly completely removed from the soil of fertilized plots by the end of the growing season. Both bacterial/archaeal and fungal communities showed large spatial (by depth) and temporal variation (by season) within each plot, accounting for 17 and 12–22% of the variation as calculated from the Sq. root of PERMANOVA tests for bacterial/archaeal and fungal community composition, respectively. While N fertilization effects accounted for only ~4% of overall variation, some specific microbial groups, including the bacterial genus Pseudonocardia and the fungal genus Archaeorhizomyces, were notably repressed by fertilization at 200 kg N ha-1. Bacterial groups varied with both depth in the soil profile and time of sampling, while temporal variability shaped the fungal community more significantly than vertical heterogeneity in the soil. These results suggest that short-term effects of N fertilization are significant but subtle, and other sources of variation will need to be carefully accounted for study designs including multiple intra-annual sampling dates, rather than one-time “snapshot” analyses that are common in the literature. Continued analyses of these trends over time with fertilization and management are needed to understand how these effects may persist or change over time.
机译:与以前的长期施肥响应研究相比,土壤微生物对短期氮素的响应仍然不确定。在这里,我们研究了一个8年历史的柳枝field施氮前后的土壤细菌/古细菌和真菌群落,其中24个样地以三个水平(0、100和200 kg N ha <自种植以来首次以sup> -1 作为NH4NO3)。在两个深度(0–5和5–15 cm)处收集土壤,用于16S rRNA基因和ITS区域的DNA提取和扩增子测序,以评估微生物群落组成。施肥前的基线评估显示,各样地的细菌/古生菌或真菌群落中均没有明显的既存差异。一次性施氮增加了柳枝yield产量和组织氮含量,到生长季节结束时,添加的氮几乎完全从施肥地的土壤中清除。在每个样地中,细菌/古细菌和真菌群落均显示出较大的空间(按深度)和时间变化(按季节),分别占Sq计算的变化的17和12–22%。 PERMANOVA测试的根分别用于细菌/古细菌和真菌群落组成。施氮量仅占总变异量的约4%,但在200 kg N ha -1 下施肥可显着抑制某些特定的微生物群,包括细菌假性心原菌属和真菌古生菌属。细菌群体随土壤剖面深度和采样时间的变化而变化,而时间变异性对真菌群落的影响远大于土壤中的垂直异质性。这些结果表明,氮肥的短期影响是显着的,但微妙的,对于研究设计,还需要仔细考虑其他变异来源,包括多个年度内采样日期,而不是一次性的“快照”分析在文学中。需要通过施肥和管理对这些趋势进行长期分析,以了解这些影响如何随着时间的流逝而持续或改变。

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