Department of Agricultural and Environmental Sciences, Tennessee State University, Nashville, TN, 37209, United States.
Jiangxi Provincial Key Laboratory for Bamboo Germplasm Resources and Utilization, Forestry College, Jiangxi Agricultural University, Nanchang, 330045, Jiangxi, China.
Sci Rep. 2018 Jan 29;8(1):1734. doi: 10.1038/s41598-017-18486-5.
The effects of intensive nitrogen (N) fertilizations on spatial distributions of soil microbes in bioenergy croplands remain unknown. To quantify N fertilization effect on spatial heterogeneity of soil microbial biomass carbon (MBC) and N (MBN), we sampled top mineral horizon soils (0-15 cm) using a spatially explicit design within two 15-m plots under three fertilization treatments in two bioenergy croplands in a three-year long fertilization experiment in Middle Tennessee, USA. The three fertilization treatments were no N input (NN), low N input (LN: 84 kg N ha in urea) and high N input (HN: 168 kg N ha in urea). The two crops were switchgrass (SG: Panicum virgatum L.) and gamagrass (GG: Tripsacum dactyloides L.). Results showed that N fertilizations little altered central tendencies of microbial variables but relative to LN, HN significantly increased MBC and MBC:MBN (GG only). HN possessed the greatest within-plot variances except for MBN (GG only). Spatial patterns were generally evident under HN and LN plots and much less so under NN plots. Substantially contrasting spatial variations were also identified between croplands (GG > SG) and among variables (MBN, MBC:MBN > MBC). This study demonstrated that spatial heterogeneity is elevated in microbial biomass of fertilized soils likely by uneven fertilizer application in bioenergy crops.
高强度氮肥(N)施肥对生物能源作物土壤微生物空间分布的影响尚不清楚。为了量化 N 施肥对土壤微生物生物量碳(MBC)和 N(MBN)空间异质性的影响,我们在美国田纳西州中部的一项为期三年的施肥实验中,在两个生物能源作物地的两个 15m 样地内,使用空间显式设计,在三个施肥处理下采样表层土壤(0-15cm)。三个施肥处理分别为不施氮(NN)、低氮输入(LN:尿素施用量 84kg N ha)和高氮输入(HN:尿素施用量 168kg N ha)。两种作物分别为柳枝稷(SG:Panicum virgatum L.)和象草(GG:Tripsacum dactyloides L.)。结果表明,N 施肥对微生物变量的中心趋势影响不大,但与 LN 相比,HN 显著增加了 MBC 和 MBC:MBN(仅 GG)。除 MBN(仅 GG)外,HN 具有最大的样地内方差。HN 处理下的空间模式通常较为明显,而 LN 和 NN 处理下则不太明显。在 NN 处理下,不同样地(GG>SG)和不同变量(MBN、MBC:MBN>MBC)之间也存在显著的空间变化。本研究表明,由于生物能源作物中肥料施用不均匀,施肥土壤中微生物生物量的空间异质性增加。