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Vegetation restoration altered the soil organic carbon composition and favoured its stability in a Robinia pseudoacacia plantation

刺槐 土壤碳 植树造林 木质素 环境科学 总有机碳 化学 植被(病理学) 固碳 环境化学 农学 土壤水分 生态学 农林复合经营 土壤科学 氮气 生物 有机化学 病理 医学
作者
Zhuoxia Su,Yangquanwei Zhong,Xiaoyue Zhu,Yang Wu,Zhifeng Shen,Zhouping Shangguan
出处
期刊:Science of The Total Environment [Elsevier BV]
卷期号:899: 165665-165665 被引量:30
标识
DOI:10.1016/j.scitotenv.2023.165665
摘要

Soil organic carbon (SOC) stabilization is vital for the mitigation of global climate change and retention of soil carbon stocks. However, there are knowledge gaps on how SOC sources and stabilization respond to vegetation restoration. Therefore, we investigated lignin phenol and amino sugar biomarkers, SOC physical fractions and chemical structure in one farmland and four stands of a Robinia pseudoacacia plantation. We observed that the content of SOC increased with afforestation, but the different biomarkers had different contributions to SOC. Compared to farmland, the contribution of lignin phenols to SOC decreased in the plantations, whereas there was no difference among the four stand ages, likely resulting from the balance between increasing lignin derivation input and increasing lignin degradation. Conversely, vegetation restoration increased the content of microbial necromass carbon (MNC) and the contribution of MNC to SOC, mainly because microbial residue decomposition was inhibited by decreasing the activity of leucine aminopeptidase, while microbial necromass preservation was promoted by adjusting soil variables (soil water content, clay, pH and total nitrogen). In addition, vegetation restoration increased the particulate organic carbon (POC), mineral-associated organic carbon (MAOC) pools and the O-alkyl C intensify. Overall, vegetation restoration affected SOC composition by regulating lignin phenols and microbial necromass and also altered SOC stabilization by increasing the physically stable MAOC pool during late afforestation. The results of this study suggest that more attention should be given to SOC sequestration and stability during late vegetation restoration.
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