不同林龄马尾松人工林土壤微生物群落结构和功能多样性演变
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国家重点研发计划项目(2017YFD0600304)、贵州省一流学科建设(GNYL[2017]007)和贵州省科学技术基金(黔科合LH字[2018]2035号)


Evolution of Soil Microbial Community Structure and Functional Diversity in Pinus Massoniana Plantations with Age of Stand
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National Key Research and Development Program of China (No. 2017YFD0600304), the First-Class Discipline Construction in Guizhou Province (No. GNYL[2017]007) and the Science and Technology Foundation of Guizhou Province (No. [2018]2035)

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    摘要:

    土壤微生物在森林生态系统中起着至关重要的作用,研究人工林演变中土壤微生物群落结构特征,对评价人工林土壤质量动态变化和维持土壤微生态平衡具有重要意义。以亚热带地区马尾松人工林为研究对象,采用磷脂脂肪酸(Phospholipid fatty acid,PLFA)和BIOLOG技术研究不同林龄(13 a,25 a,38 a和58 a)对土壤微生物群落结构和代谢功能多样性的影响。结果表明:不同林龄土壤微生物类群均以细菌为主,其次为真菌和放线菌,最后为原生动物;土壤微生物总PLFAs量、真菌数量和真菌/细菌均表现为13 a最高,38 a最低;土壤细菌、革兰氏阳性细菌(G+)、革兰氏阴性细菌(G-)和放线菌数量均25 a最高。层次聚类和主成分分析(PCA)结果表明,林龄对土壤微生物群落结构产生显著影响,13 a和25 a林龄分别与38 a和58 a林龄的土壤微生物群落结构差异较大。冗余分析表明,有机碳、全氮和pH是土壤微生物群落结构的主要影响因素。不同林龄土壤平均颜色变化率(AWCD)和微生物功能多样性指数(香农指数、辛普森指数和McIntosh指数)总体表现为25 a>13 a>58 a>38 a;不同林龄土壤微生物对碳源的利用存在差异,各林龄利用的主要碳源为氨基酸类、羧酸类和酚类,其中25 a在各碳源中利用率最高。PLFA和BIOLOG综合分析可知,马尾松人工林种植25 a后,土壤微生物群落结构稳定性和功能代谢活性明显降低,加剧了土壤微生态失衡。

    Abstract:

    【Objective】Soil microbes, as an active component of the soil, play an essential role in the forest ecosystem. It is, therefore, of great significance to study characteristics of the soil microbial community structures in plantations different in evolution process to evaluation of dynamics of soil quality and maintenance of soil microecological balance in the plantations. 【Method】In this paper, evolution of the soil microbial community structure and soil metabolic function diversity with age (13 a, 25 a, 38 a and 58 a) of Pinus massoniana plantations in subtropical China was explored using the phospholipid fatty acid(PLFA)method and BIOLOG technique. 【Result】Results show that bacteria were the dominant soil microbe, fungi and actinomyces followed in dominance, and protozoa did in the end in the soils of the plantations regardless of age; in terms of soil microbial total PLFAs, fungal population and fungal/bacteria, the plantation 13 a in age ranked first and that 38 a in age in the end, while in terms of soil biomass of bacteria, gram-positive bacteria (G+), gram-negative bacteria (G-) and actinomyces, the plantation 25 a in age ranked first.Hierarchical clustering and principal component analysis (PCA) revealed that stand age did affect soil microbial community structure significantly, and as a result, soil microbial community structure in the plantations 13 a and 25 a old differed sharply from those in the plantations 38 a and 58 a old. Redundancy analysis (RDA) of soil PLFAs and soil nutrients shows that soil organic carbon, total nitrogen and pH were the main factors affecting soil microbial community structure. In the light of average well color development (AWCD) and microbial functional diversity indexes of the soil (Shannon indexes、Simpson indexes and McIntosh indexes) the plantations displayed an order of 25 a > 13 a> 58 a >38 a; the plantations also varied sharply in utilization of carbon sources. Amino acids, carboxylic acids and amines were the main carbon sources in all the soils, and the plantation 25 a old was the highest in utilization rate of these carbon sources. 【Conclusion】 Both the PLFA and BIOLOG demonstrate that when the plantations of Pinus massoniana grow over 25 years, their soil microbial community structures lower in stability and their metabolic function does in activity, too significantly, which in turn exacerbates microecological imbalance in the soils of Pinus massoniana plantations.

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赵 辉,周运超,任启飞.不同林龄马尾松人工林土壤微生物群落结构和功能多样性演变[J].土壤学报,2020,57(1):227-238. DOI:10.11766/trxb201805210269 ZHAO Hui, ZHOU Yunchao, REN Qifei. Evolution of Soil Microbial Community Structure and Functional Diversity in Pinus Massoniana Plantations with Age of Stand[J]. Acta Pedologica Sinica,2020,57(1):227-238.

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  • 收稿日期:2018-05-21
  • 最后修改日期:2018-09-05
  • 录用日期:2018-12-08
  • 在线发布日期: 2019-11-07
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