亚热带12种人工林功能性状与土壤 酸性磷酸酶活性的相关分析

    Correlation Analysis between Functional Traits of 12 Artificial Forest Tree Species and Soil Acid Phosphatase Activity in Subtropical Regions

    • 摘要: 土壤酸性磷酸酶活性是土壤磷有效性的重要指标。为了研究不同树种对土壤酸性磷酸酶活性的影响,为亚热带地区人工造林提供理论依据。选择亚热带地区常见的12个树种,测量每个树种地上和地下的6个功能性状,以及每个样方的土壤酸性磷酸酶活性,评估了12种人工林功能性状与土壤磷酸酶活性之间的关系。结果表明:12种人工林比叶面积的变化范围为5.6~9.4 m2·kg−1;叶干物质含量的变化范围为287.73~486.39 mg·g−1;叶片氮含量的变化范围为1.1%~2.01%;叶片磷含量的变化范围为0.04%~0.13%;根直径的变化范围为0.41~0.73 mm;比根长的变化范围为19.89~57.14 mm。每个样方的土壤酸性磷酸酶活性的变化范围为42.3~212.0(umol·g−1·h−1),其中米老排212.0±46.9(umol·g−1·h−1)最高,石栎42.3 ±8.4(umol·g−1·h−1)最低。12种人工林功能性状与土壤酸性磷酸酶活性的Pearson相关分析表明,不同树种的比叶面积和根直径与土壤酸性磷酸酶活性呈正相关,而叶干物质含量和比根长与土壤酸性磷酸酶活性负相关。研究结果说明,不同树种的功能性状可以通过植物不同的养分获取策略,从而影响土壤酸性磷酸酶活性。

       

      Abstract: Soil acid phosphatase activity is a critical indicator of soil phosphorus bioavailability. To investigate the impact of different tree species on soil acid phosphatase activity and provide theoretical support for afforestation in subtropical regions. This study selected 12 common tree species in subtropical regions, measured six functional traits for each species, including both above-ground and below-ground traits, as well as determined the soil acid phosphatase activity in each sample plot, and evaluated the relationship between the functional traits of the 12 tree species and soil phosphatase. The results showed that: The specific leaf area of the 12 tree species ranged from 5.6 to 9.4 m²·kg−1; leaf dry matter content varied from 287.73 to 486.39 mg·g−1; leaf nitrogen content ranged from 1.1% to 2.01%; leaf phosphorus content ranged from 0.04% to 0.13%; root diameter varied from 0.41 to 0.73 mm; and specific root length ranged from 19.89 to 57.14 mm. Soil acid phosphatase activity exhibited a range from 42.3 to 212.0 μmol·g−1·h−1, with the highest values recorded in Myrica cerifera(212.0 ± 46.9 μmol·g−1·h−1)and the lowest in Quercus variabilis(42.3 ± 8.4 μmol·g−1·h−1). The Pearson correlation analysis between the functional traits of 12 tree species and soil acid phosphatase activity shows that the specific leaf area and root diameter of different tree species are positively correlated with soil acid phosphatase activity, while leaf dry matter content and specific root length are negatively correlated with soil acid phosphatase activity. The results of the study suggest that the functional traits of different tree species can influence soil acid phosphatase activity by affecting the plant’s phosphorus acquisition strategy.

       

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