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Glomalin contributed more to carbon nutrients in deeper soils and differently associated with climates and soil properties in vertical profiles

机译:glomalin在更深的土壤中对碳养分的贡献更大并且在垂直剖面中与气候和土壤特性有不同的联系

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摘要

Despite vital importance in soil conditioning and a proxy for arbuscular mycorrhizal (AMF), glomalin-related soil protein (GRSP) contribution to soil carbon and nutrients at vertical soil profiles and underlying mechanism were not well-defined yet. Thus, 360 soil samples were collected from 72 farmland 1-m soil profiles in northeastern China, and soil physiochemical properties, nutrients, glomalin characteristics, local climates were determined. Linear decreases of glomalin amounts were observed from the top to deep soils, and glomalin/SOC (glomalin ratio to total SOC) in the 80–100 cm soil (EEG, easily-extracted GRSP, 2.2%; TG, total GRSP, 19%) was 1.34–1.5-fold higher than did in the 0–20 cm soil. Different statistical analyses crosschecked that the lower pH and higher SOC usually accompanied with the higher EEG and TG, while EEG was more sensitive to climates; Moreover, glomalin was more physiochemical-regulated in the deep soils, but more nutrient-regulation was found in the surface soils. Structure Equation Model showed that soil depths and climates indirectly affected TG and EEG features through soil properties, except significant direct effects on EEG. In future, glomalin assessment should fully consider these for identifying the AMF importance in the whole 1-m profile, and our findings also favor degrade soil improvement from glomalin rehabilitation.
机译:尽管在土壤调节中起着至关重要的作用,并且可以作为丛枝菌根(AMF)的替代物,但是在垂直土壤剖面和基础机理中,与草甘膦相关的土壤蛋白(GRSP)对土壤碳和养分的贡献还不清楚。因此,从中国东北的72个农田的1米土壤剖面中收集了360个土壤样品,并测定了土壤理化特性,养分,gloomalin特性和局部气候。从表层到深层土壤中的glomalin量呈线性下降,在80–100 cm的土壤中(EEG,易提取的GRSP为2.2%; TG,总GRSP为19%),glomalin / SOC(glomalin与总SOC的比率)呈线性下降。 )比0-20cm的土壤高1.34-1.5倍。不同的统计分析交叉核实,较低的pH和较高的SOC通常伴随较高的EEG和TG,而EEG对气候更敏感。此外,在深层土壤中,gloomalin的理化作用更强,但在表层土壤中的养分含量更高。结构方程模型表明,土壤深度和气候通过土壤特性间接影响了TG和EEG的特征,除了对EEG的直接影响很大。将来,gloomalin评估应充分考虑这些因素,以识别整个1 m剖面中AMF的重要性,我们的发现还支持通过glomalin修复降低土壤质量。

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