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纯林和混交林土壤团聚体的磷素形态特征及影响因素

Phosphorus fraction characteristics and influencing factors of soil aggregates in pure and mixed forests.

作者信息

Liu Da-Yuan, Meng Dong-Yue, Yu Chen-Yi, Li Jun-Jie, Guan Qing-Wei

机构信息

Co-Innovation Centre for Sustainable Forestry in Southern China, Nanjing Forestry University, Nanjing 210037, China.

College of Ecology and Environment, Nanjing Forestry University, Nanjing 210037, China.

出版信息

Ying Yong Sheng Tai Xue Bao. 2025 Aug;36(8):2344-2352. doi: 10.13287/j.1001-9332.202508.016.

Abstract

Phosphorus components in the soil aggregates of different particle sizes is critical for improving phosphorus availability in north subtropical regions. We investigated two representative stand types, pure stands and the mixed stands of and in Lishui District, Nanjing. We measured soil aggregates from two soil layers (0-20 cm and 20-40 cm) to determine the stability of soil aggregates, labile phosphorus fraction content and the acid phosphatase activity of each particle size, as well as litter biomass and fine root biomass, to analyze the differences of active phosphorus fractions of soil aggregates between different stand types. The results showed that the content of macroaggregates (>2 mm) was higher than those of other particle sizes in different soil layers of both stand types. The proportion of macroaggregates was 48.4% in mixed stands and 43.7% in pure stands. In the 0-20 cm soil layer, the stability of soil aggregates was significantly greater in mixed stands than in pure stands. In the 0-20 cm soil layer, the total phosphorus (TP) content in aggregates of both stands ranged from 181.82 to 273.34 mg·kg, without significant difference between the two stands, while that in the 20-40 cm layer ranged from 172.51 to 251.49 mg·kg, with the mixed stands exhibiting significantly higher TP in macro-aggregates (>2 mm) than the pure stands. In the 0-20 cm soil layer, available phosphorus (AP) content in aggregates ranged from 18.29 to 33.10 mg·kg, without difference between the two stands, while that in the 20-40 cm layer ranged from 11.78 to 25.22 mg·kg, with the mixed stands having higher AP across all aggregate particle sizes than the pure stands. Acid phosphatase activity in mixed stands was significantly higher than in pure stands across all soil aggregate sizes and depth layers. Fine root biomass in the mixed stands was significantly greater than in the pure stands in both soil layers. In contrast, litter biomass did not differ between stands. Generalized linear mixed models revealed that soil pH, acid phosphatase activity of soil aggregates, and stand types exerted significant effects on labile phosphorus content of soil aggregates in the 0-20 cm soil layer, explaining 32.0%, 15.7%, and 9.0% of the variance, respectively. In the 20-40 cm layer, stand type, acid phosphatase activity of soil aggregates, fine root biomass, and litter biomass all showed significant influences, accounting for 22.0%, 16.5%, 16.2%, and 10.6% of the variance. Compared to pure stands, mixed stands enhanced soil labile phosphorus content by influencing multiple environmental factors.

摘要

不同粒径土壤团聚体中的磷组分对于提高北亚热带地区的磷有效性至关重要。我们调查了南京溧水区两种代表性林分类型,即纯林以及[具体树种1]和[具体树种2]的混交林。我们测量了两个土层(0 - 20厘米和20 - 40厘米)的土壤团聚体,以确定土壤团聚体的稳定性、各粒径的活性磷组分含量和酸性磷酸酶活性,以及凋落物生物量和细根生物量,从而分析不同林分类型之间土壤团聚体活性磷组分的差异。结果表明,在两种林分类型的不同土层中,大团聚体(>2毫米)的含量均高于其他粒径。混交林中大团聚体的比例为48.4%,纯林中为43.7%。在0 - 20厘米土层中,混交林土壤团聚体的稳定性显著高于纯林。在0 - 20厘米土层中,两种林分团聚体中的总磷(TP)含量在181.82至273.34毫克·千克之间,两者无显著差异,而在20 - 40厘米土层中,含量在172.51至251.49毫克·千克之间,混交林大团聚体(>2毫米)中的TP显著高于纯林。在0 - 20厘米土层中,团聚体中的有效磷(AP)含量在18.29至33.10毫克·千克之间,两者无差异,而在20 - 40厘米土层中,含量在11.78至25.22毫克·千克之间,混交林所有团聚体粒径的AP均高于纯林。在所有土壤团聚体粒径和深度层次上,混交林的酸性磷酸酶活性均显著高于纯林。在两个土层中,混交林的细根生物量均显著大于纯林。相比之下,林分之间的凋落物生物量没有差异。广义线性混合模型显示,土壤pH值、土壤团聚体的酸性磷酸酶活性和林分类型对0 - 20厘米土层中土壤团聚体的活性磷含量有显著影响,分别解释了32.0%、15.7%和9.0%的变异。在20 - 40厘米土层中,林分类型、土壤团聚体的酸性磷酸酶活性、细根生物量和凋落物生物量均有显著影响,分别占变异的22.0%、16.5%、16.2%和10.6%。与纯林相比,混交林通过影响多种环境因素提高了土壤活性磷含量。

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