[宁夏黄土丘陵区农田土壤细菌的海拔分布特征]。

Q2 Environmental Science Huanjing Kexue/Environmental Science Pub Date : 2024-06-08 DOI:10.13227/j.hjkx.202306212
Xia Wu, Jin-Jun Cai, Zhang-Jun Wang, Wei-Qian Li, Gang Chen, Yang-Yang Bai
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引用次数: 0

摘要

研究农田土壤微生物的多样性、结构、功能、生物地理分布及其影响因素对保护农田生态系统的生物多样性具有重要意义。利用高通量测序技术分析了宁夏黄土丘陵区农田土壤细菌多样性、群落结构、代谢功能随海拔高度的分布特征及其对土壤理化性质的响应。结果表明:①土壤细菌的Alpha多样性指数与海拔呈显著负相关(P <0.05),并呈现出沿海拔先降低后略有升高的趋势。土壤细菌的α多样性指数与海拔呈显著负相关(P <0.05),且随海拔的升高呈先降低后略微升高的趋势;② 蛋白细菌、放线菌、酸细菌等 7 个菌门为优势菌门,其中 5 个菌门在不同海拔高度间差异极显著(P <0.01)。在二级分类水平上,细菌的代谢功能有 36 种,包括膜运输、碳水化合物代谢和氨基酸代谢,其中 22 种表现出显著差异,12 种在不同海拔之间表现出极显著差异。④ Pearson 相关分析表明,土壤含水量、容重、pH 值和碳氮比对细菌 Alpha 多样性的影响最显著,而土壤养分如全有机碳、全氮和全磷对细菌 Beta 多样性的影响显著。⑤曼特尔检验分析表明,土壤含水量、总有机碳和碳氮比对细菌群落结构有门类水平的影响,土壤 pH 值、总有机碳、总氮、总磷和碳氮比与细菌代谢功能有显著相关性。方差分配分析表明,土壤含水量对土壤细菌群落结构的解释度最高,而土壤 pH 对代谢功能的解释度最高。综上所述,土壤含水量和 pH 值是影响宁夏黄土丘陵区农田土壤细菌多样性、群落组成和代谢功能的主要因素。
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[Altitude Distribution Characteristics of Farmland Soil Bacteria in Loess Hilly Region of Ningxia].

It is of great significance for the conservation of biodiversity in farmland ecosystems to study the diversity, structure, functions, and biogeographical distribution of soil microbes in farmland and their influencing factors. High-throughput sequencing technology was used to analyze the distribution characteristics of soil bacterial diversity, community structure, and metabolic function along elevation and their responses to soil physicochemical properties in farmland in the loess hilly areas of Ningxia. The results showed that:① The Alpha diversity index of soil bacterial was significantly negatively correlated with elevation (P < 0.05) and showed a trend of decreasing and then slightly increasing along the elevation. ② Seven phyla, including Proteobacteria, Actinobacteria, and Acidobacteria, were the dominant groups, and five of them showed highly significant differences between altitudes (P < 0.01). ③ At the secondary classification level, there were 36 metabolic functions of bacteria, including membrane transport, carbohydrate metabolism, and amino acid metabolism, of which 22 showed significant differences, and 12 showed extremely significant differences among different altitudes. ④ Pearson correlation analysis showed that soil water content, bulk density, pH, and carbon-nitrogen ratio had the most significant effects on bacterial Alpha diversity, whereas soil nutrients such as total organic carbon, total nitrogen, and total phosphorus had significant effects on bacterial Beta diversity. ⑤ Mantel test analysis showed that the soil water content, total organic carbon, and carbon-nitrogen ratio affected bacterial community structure at the phylum level, and soil pH, total organic carbon, total nitrogen, total phosphorus, and carbon-nitrogen ratio were significantly correlated with bacterial metabolic function. Variance partitioning analysis showed that soil water content had the highest explanation for the community structure of soil bacteria, whereas soil pH had the highest explanation for metabolic function. In conclusion, soil water content and pH were the main factors affecting the diversity, community composition, and metabolic function of soil bacteria in farmland in the loess hilly region of Ningxia.

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来源期刊
Huanjing Kexue/Environmental Science
Huanjing Kexue/Environmental Science Environmental Science-Environmental Science (all)
CiteScore
4.40
自引率
0.00%
发文量
15329
期刊最新文献
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