花岗岩风化土壤区解钾微生物多样性分析
Analysis of Potassium-Solubilizing Microbial Diversity in Granite-Weathered Soils
投稿时间:2026-05-18  修订日期:2026-06-02
DOI:
中文关键词:  高通量测序  解钾微生物  微生物群落结构  花岗岩风化土壤
英文关键词:high-throughput sequencing  potassium-solubilizing microorganisms  microbial community structure  granite-weathered soil
基金项目:天津市重点研发计划京津冀协同创新项目(YFXTHZ00170、YFXTHZ00050);天津市重点研发科技服务业研发专项(25YFKFYS00550);天津市科技局企业科技特派员项目(25YDTPJC00510);天津市重点研发计划科技支撑重点项目(23YFZCSN00400)。
作者单位邮编
张有军* 天津华北地质勘查总院 300170
毕然 天津理工大学环境科学与安全工程学院 
张晓鹏 天津华北地质勘查总院 
王倩 天津华北地质勘查总院 
张瑞玲 天津理工大学环境科学与安全工程学院 
李彭辉 天津理工大学环境科学与安全工程学院 
岳俊杰 天津理工大学环境科学与安全工程学院 
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中文摘要:
      为揭示花岗岩风化土壤区中潜在解钾功能细菌群落的群落结构及功能潜力,本研究选取河南栾川和河北赤城两个花岗岩资源丰富的地区作为研究对象,并以天津市林业用地作为对照,通过高通量测序手段,系统分析不同土壤样本细菌群落的组成,多样性及表型功能预测,探讨潜在解钾功能细菌群落的生态分布特征。结果显示:花岗岩风化土壤中酸性杆菌门占24%,对照组中酸性杆菌门的相对丰度大大减少,仅为2%。花岗岩风化土壤区的Alpha多样性指数整体高于对照组,潜在解钾功能细菌群落种类更为丰富且分布更均匀。基于Bray?Curtis距离的非度量多维尺度分析(NMDS)得到的应力值小于?0.05,模型拟合良好,整体上组间的差异大于组内的差异,分组差异性较大。BugBase表型功能预测信息表明,花岗岩风化土壤区中具有生物膜形成能力、厌氧耐受性及革兰氏阳性表型的潜在解钾功能细菌群落更为优势;相比之下,对照组土壤潜在解钾功能细菌群落则在革兰氏阴性、含有可移动遗传元件、潜在致病性及耐逆境等相关表型上表现出更高比例。
英文摘要:
      To reveal the community structure and functional potential of potential potassium-solubilizing bacterial communities in granite weathering soil areas, this study selected two granite-rich regions, Luanchuan in Henan Province and Chicheng in Hebei Province, as the research subjects, with forestry land in Tianjin as the control. Using high-throughput sequencing, we systematically analyzed the composition, diversity, and phenotypic functional predictions of bacterial communities in different soil samples, and explored the ecological distribution characteristics of potential potassium-solubilizing bacterial communities. The results showed that in granite weathering soils, Acidobacteria accounted for 24%, while their relative abundance significantly decreased to only 2% in the control group. The alpha diversity indices of the granite weathering soil areas were generally higher than those of the control group, indicating a richer and more evenly distributed community of potential potassium-solubilizing bacteria. Non-metric multidimensional scaling (NMDS) based on Bray?Curtis distance yielded a stress value of less than 0.05, indicating a good model fit, with overall greater inter-group differences than intra-group differences, suggesting substantial grouping dissimilarity. BugBase phenotypic functional predictions revealed that in the granite weathering soil areas, potential potassium-solubilizing bacterial communities with biofilm-forming capacity, anaerobic tolerance, and Gram-positive phenotypes were more dominant. In contrast, the potential potassium-solubilizing bacterial communities in the control group soils exhibited higher proportions of phenotypes such as Gram-negative, mobile genetic element-containing, potentially pathogenic, and stress-tolerant.
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