秦岭石生苔藓结皮的微生物群落组成和多样性特征
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国家重点研发计划(2017YFC0504703);


Microbial Community Composition and Diversity Characteristics of Lithophytic Moss Biocrusts of Qinling Mountains
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    摘要:

    苔藓结皮是地表重要的活性覆盖物,具有改善土壤性状、固土持水、固碳固氮等多种生态功能,微生物群落是苔藓结皮发挥生态功能的主要成分。为了探究湿润区石生苔藓结皮的微生物群落组成及其多样性特征,揭示其发育形成机制以及功能机理,该研究以秦岭北麓的泥峪、车峪、骆峪5个样地的石生苔藓结皮为研究对象,利用高通量测序技术,分析了石生苔藓结皮层的微生物群落组成、丰度、多样性,并测定分析养分与微生物群落的关系,为裸露岩石创面的生态修复提供理论依据。结果表明:(1)秦岭石生苔藓结皮层的全氮和有机质含量在4.16~8.26 g/kg、89.44~131.05 g/kg之间,且样点间均差异显著;全磷和全钾含量较低,分别为0.88~1.21 g/kg 和13.50~18.10 g/kg。(2)秦岭石生苔藓结皮层中细菌占微生物群落组成的80%以上,且细菌的多样性也远高于真菌;其中细菌优势菌群为变形菌门(Proteobateria)、拟杆菌门(Bateroidetes)、放线菌门(Actinobacteria)和酸杆菌门(Acidobacteria),真菌优势菌群为子囊菌门(Ascomycota)和被孢霉菌门(Mortierellomycota)。(3)冗余分析(RDA)显示,全钾和有机质对优势细菌群落结构影响显著,变形菌和拟杆菌适宜生活在湿度大、营养状况良好的基质中;全磷和有机质对优势真菌群落结构影响显著,被孢霉菌门在低磷基质中更具生长优势。研究发现,细菌是秦岭石生苔藓结皮层的优势菌群,与旱区土生状况相比,秦岭石生苔藓结皮层的放线菌和酸杆菌的含量有所下降,而拟杆菌含量显著增加;对于真菌而言,子囊菌门和担子菌门的相对丰度明显减少,被孢菌门丰度显著增加;有机质是影响结皮层微生物群落组成最主要的养分因子,丰富的养分使湿润区石生苔藓结皮层的微生物群落结构更加复杂多样、物种组成更加丰富。

    Abstract:

    Moss biocrusts are the critical active cover on the surface, with various ecological functions such as improving soil properties, fixing soil and water, sequestration of carbon and nitrogen, and microbiological community is the main component of Moss biocrusts to play its ecological function. To explore the wet area of lithophytic moss biocrusts microbial community composition and diversity characteristics, reveal its development and functional mechanism, our study focused on the lithophytic moss biocrust in five sampling sites of Niyu, Cheyu and Luoyu at the northern foot of the Qinling Mountains, used high throughput sequencing technology, analyzed the lithophytic moss biocrusts microbial community composition, abundance, diversity, and determined the relationship between nutrients and microbial community, to provide theoretical basis for the ecological restoration of bare rock wounds. The results show that: (1) the total nitrogen and organic matter contents of Qinling lithophytic moss biocrusts are between 4.16 to 8.26 g/kg and 89.44 to 131.05 g/kg, respectively, and the differences between the sampling site are significant; whole phosphorus and potassium was low, ranging from 0.88 to 1.21 g/kg and 13.50 to 18.10 g/kg, respectively. (2) Bacteria in the Qinling lithophytic moss biocrusts account for more than 80% of the microbial community, and the diversity of bacteria is much higher than that of fungi; Among them, the predominant bacterial flora are Proteobateria, Bateroidetes, Actinobacteria and Acidobacteria, and the dominant community of fungi are Ascomycota and Mortierellomycota. (3) The Redundancy analysis (RDA) shows that total potassium and organic matter significantly impact the structure of the predominant bacterial community. Proteobacteria and Bacteroidetes are suitable for living in the soil with high humidity and good nutrition; whole phosphorus and organic matter significantly influence the structure of the predominant fungal community, and the Mortierellomycota has more growth advantage in low phosphorus soil. It is found that bacteria are the main microbe of Qinling lithophytic moss biocrusts. Compared with the native situation in the arid region, Qinling lithophytic moss biocrusts showed significantly lower content of the Actinobacteria and Acidobacteria; for fungi, the relative abundance of Ascomycota and Basidiomycetes has significantly decreased, and significantly higher of Mortierellomycota. Organic matter is the most important nutrient factor affecting the composition of the microbial community in the moss biocrusts. The rich nutrients make the microbial community structure of lithophytic moss biocrusts in wet areas more complex and diverse and showed higher abundant species composition.

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周雯娟,卜崇峰,韦应欣.秦岭石生苔藓结皮的微生物群落组成和多样性特征[J].西北植物学报,2022,42(9):1600-1610

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  • 在线发布日期: 2022-10-10
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