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首页> 外文期刊>Applied Soil Ecology >Biogenic structures of two ant species Formica sanguinea and Lasius flavus altered soil C, N and P distribution in a meadow wetland of the Sanjiang Plain, China
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Biogenic structures of two ant species Formica sanguinea and Lasius flavus altered soil C, N and P distribution in a meadow wetland of the Sanjiang Plain, China

机译:三江平原草甸湿地中两种蚂蚁福米卡和黄褐藻的生物结构改变了土壤碳,氮和磷的分布

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摘要

Biogenic structures produced by soil ecosystem engineers influence the soil architecture and mediate soil functions and ecosystem services. Ant mounds in meadow wetlands are important biogenic structures with the potential of altering carbon storage and nutrient cycling in these ecosystems. In this study, we examined the soil nutrient concentrations of ant mounds and their effects on the wetland nutrient storage functions in meadow wetlands of the Sanjiang Plain, in northeastern China. The aims of this study were to investigate C, N and P variation in active ant mounds produced by Formica sanguinea Latreille and Lasius flavus Fabricius to estimate the C, N and P pools of ant mounds in comparison with control soil. The average total N (TN), total P (TP) and available P (AP) concentrations in the ant mounds of both species were higher than in the control soil. Organic carbon (C sub(org)), DOC, NH sub(4) super(+)and NO sub(3) super(-) in F. sanguinea mounds were higher than in the control soil, but not for L. flavus mounds. Average concentrations of all the five types of nutrient were higher in F. sanguinea mounds than in L. flavus mounds. The variations in C sub(org), DOC, TN and TP concentrations in ant mounds were not significant at depths from 0 to 25 cm. NH sub(4) super(+) and NO sub(3) super(-) concentrations differed by soil layers for F. sanguinea mounds but not for L. flavus mounds. The C/N ratios were generally lower in the mounds than in the control soil (at 5-25 cm), but no significant differences were found for C/P ratios (except at 10-15 cm). Carbon and DOC pools were smaller, TN and AP pools were larger in ant mounds compared with the control soil, but there was no significant difference for TP pools. NH sub(4) super(+)and NO sub(3) super(-) pools were substantially larger in F. sanguinea mounds, but smaller in L. flavus mounds, than those in the control soil. All of the five types of nutrient pools were larger in F. sanguinea than in L. flavus mounds. Ant mounds increased the spatial variability of soil nutrient pools in the wetland.
机译:土壤生态系统工程师生产的生物结构会影响土壤结构并介导土壤功能和生态系统服务。草甸湿地中的蚁丘是重要的生物结构,具有改变这些生态系统中碳储存和养分循环的潜力。在这项研究中,我们研究了中国东北三江平原草甸湿地蚂蚁土的土壤养分浓度及其对湿地养分存储功能的影响。这项研究的目的是调查福米卡(Formica sanguinea)Latreille和Lasius flavus Fabricius产生的活性蚁丘中C,N和P的变化,以估计与对照土壤相比蚁丘的C,N和P池。两种蚁丘的平均总氮(TN),总磷(TP)和有效磷(AP)浓度均高于对照土壤。 F.sanguinea土堆中的有机碳(C sub(org)),DOC,NH sub(4)super(+)和NO sub(3)super(-)高于对照土壤中的含量,但不包括L. flavus土堆。 F. sanguinea土堆中所有五种营养素的平均浓度都高于L. flavus土堆。蚁丘中C sub(org),DOC,TN和TP浓度的变化在0至25 cm的深度处不显着。 NH sub(4)的super(+)和NO sub(3)的super(-)浓度因F. sanguinea土墩的土壤层而异,而对于L. flavus土墩的土壤层没有差异。土墩中的C / N比通常比对照土壤(5-25 cm)要低,但是C / P比(10-15 cm除外)没有发现显着差异。与对照土壤相比,蚁丘的碳和DOC池较小,TN和AP池较大,但TP池没有显着差异。 NH sub(4)超级(+)和NO sub(3)超级(-)库在F. sanguinea土墩中比在对照土壤中大得多,而在L. flavus土墩中要小。 F. sanguinea的所有五种养分库都比L. flavus土墩大。蚂蚁丘增加了湿地土壤养分池的空间变异性。

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