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九龙江口恢复红树林土壤时间序列上的土壤有机碳储量与细菌群落:从潮滩到红树林造林

Soil organic carbon storages and bacterial communities along a restored mangrove soil chronosequence in the Jiulong River Estuary: From tidal flats to mangrove afforestation.

作者信息

Wang Feifei, Guo Rui, Zhang Ning, Yang Shengchang, Cao Wenzhi

机构信息

State Key Laboratory of Marine Environmental Science, Key Laboratory of the Ministry of Education for Coastal and Wetland Ecosystems, College of Environment and Ecology, Xiamen University, Xiamen, Fujian 361102, China.

出版信息

Fundam Res. 2022 Sep 9;3(6):880-889. doi: 10.1016/j.fmre.2022.08.019. eCollection 2023 Nov.

Abstract

Among many ecological services provided by mangrove ecosystems, soil organic carbon (SOC) storages have recently received much attention owing to the increasing atmospheric partial pressure of dissolved CO (CO). Bacteria are fundamental to ecosystem functions and strongly influence the coupling of coastal carbon, nitrogen, and sulfur cycling in soils. The SOC storage and bacterial communities along a restored mangrove soil chronosequence in the Jiulong River Estuary were explored using the 16S rDNA sequencing technique. The results showed the SOC storage in the 100 cm soil profile was 103.31 ± 5.87 kg C m and 93.10 ± 11.28 kg C m for mangroves with afforestation ages of 36 and 60 years, respectively. The total nitrogen (TN) and total sulfur (TS) contents exhibited significant correlations with the SOC in the mangrove soils, but only TN and SOC showed significant correlation in tidal flat soils. Although the tidal flats and mangroves occupied the contiguous intertidal zone within several kilometers, the variations in the SOC storage along the restored mangrove soil chronosequence were notably higher. The Functional Annotation of Prokaryotic Taxa (FAPROTAX) database was used to annotate the metabolic functions of the bacteria in the soils. The annotation revealed that only four metabolic functions were enriched with a higher relative abundance of the corresponding bacteria, and these enriched functions were largely associated with sulfate reduction. In addition, the specifically critical bacterial taxa that were associated with the SOC accumulation and nutrient cycling, shaped the distinct metabolic functions, and consequently facilitated the SOC accumulation in the mangrove soils with various afforestation ages. The general homogenization of the microbial community and composition along the intertidal soil chronosequence was primarily driven by the reciprocating tidal flows and geographical contiguity.

摘要

在红树林生态系统提供的众多生态服务中,由于大气中溶解态二氧化碳(CO₂)分压不断上升,土壤有机碳(SOC)储量最近备受关注。细菌对于生态系统功能至关重要,并强烈影响沿海土壤中碳、氮和硫循环的耦合。利用16S rDNA测序技术,对九龙江口恢复的红树林土壤年代序列中的SOC储量和细菌群落进行了探究。结果表明,造林年龄分别为36年和60年的红树林,其100厘米土壤剖面中的SOC储量分别为103.31±5.87千克碳/平方米和93.10±11.28千克碳/平方米。红树林土壤中的总氮(TN)和总硫(TS)含量与SOC呈显著相关,但在潮滩土壤中只有TN与SOC呈显著相关。尽管潮滩和红树林占据了几公里范围内相邻的潮间带,但沿恢复的红树林土壤年代序列的SOC储量变化明显更大。利用原核生物分类功能注释(FAPROTAX)数据库对土壤中细菌的代谢功能进行注释。注释显示,只有四种代谢功能因相应细菌的相对丰度较高而富集,这些富集功能在很大程度上与硫酸盐还原有关。此外,与SOC积累和养分循环相关的特别关键的细菌类群,塑造了独特的代谢功能,从而促进了不同造林年龄红树林土壤中的SOC积累。潮间带土壤年代序列中微生物群落和组成的总体同质化主要是由往复的潮汐流和地理位置的邻近性驱动的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/941f/11197722/48fec1472113/ga1.jpg

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