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应用生态学报 ›› 2026, Vol. 37 ›› Issue (8): 2481-2490.doi: 10.13287/j.1001-9332.202608.041

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江西大岗山杉木纯林阔叶化改造后土壤理化性质响应特征

袁媛1, 徐克芹1, 蔡宗明1, 欧阳琼1, 姚甲宝1*, 肖斌1, 丁颖1, 王斌2   

  1. 1中国林业科学研究院亚热带林业实验中心生物多样性保护与资源利用江西省重点实验室, 江西分宜 336600;
    2中国林业科学研究院亚热带林业研究所, 杭州 311400
  • 收稿日期:2026-02-10 修回日期:2026-06-23 出版日期:2026-08-18 发布日期:2027-02-18
  • 通讯作者: *E-mail: ylzx101@163.com
  • 作者简介:袁 媛, 女, 1996年生, 硕士研究生。主要从事森林土壤肥力恢复和珍贵树种培育技术研究。E-mail: Yyuan118@163.com
  • 基金资助:
    江西省重点研发计划项目(20252BCF320032,20252BCF320009)和江西省自然科学基金项目(20232BAB205047)资助。

Response characteristics of soil physicochemical properties after broad-leaved transformation of pure Cunninghamia lanceolata plantation in Dagangshan Region, Jiangxi, China

YUAN Yuan1, XU Keqin1, CAI Zongming1, OUYANG Qiong1, YAO Jiabao1*, XIAO Bin1, DING Ying1, WANG Bin2   

  1. 1Key Laboratory of Biodiversity Conservation and Resource Utilization in Jiangxi Province, Experimental Center for Subtropical Forestry, Chinese Academy of Forestry, Fenyi 336600, Jiangxi, China;
    2Research Institute of Subtropical Forestry, Chinese Aca-demy of Forestry, Hangzhou 311400, China
  • Received:2026-02-10 Revised:2026-06-23 Online:2026-08-18 Published:2027-02-18

摘要: 杉木纯林连栽易导致土壤质量退化与林地生产力下降。为探究亚热带地区珍贵乡土阔叶树种对杉木退化林地的土壤改良潜力,本研究选取闽楠、木荷、赤皮青冈3种阔叶纯林及杉木纯林为对象,以杉木采伐迹地为对照,分层(0~20、20~40、40~60 cm)测定土壤物理性质、养分含量及化学计量比,分析杉木纯林改造为阔叶纯林后的土壤理化性质响应特征。结果表明:阔叶纯林对表层(0~20 cm)土壤改良效果显著。其中,闽楠纯林在改善孔隙结构与持水性能方面表现最优,其表层土壤总孔隙度、毛管孔隙度、毛管持水量和田间持水量较杉木纯林提高6.4%~11.7%,质量含水量较对照显著提高28.7%;木荷纯林在提升土壤有机碳和全氮含量方面优势突出,其表层土壤有机碳和全氮含量分别为杉木纯林的2.8和3.6倍,为对照的2.5和2.0倍;赤皮青冈纯林则在速效养分积累上表现更佳,表层碱解氮、有效磷含量相比杉木纯林分别提升89.8%和204.9%,相比对照分别提升36.4%和85.8%。随着土层加深,阔叶纯林改良优势明显减弱。3种阔叶纯林40~60 cm土层的土壤容重较表层增加8.7%~11.4%,孔隙度、持水量及土壤有机碳、全氮、速效氮、有效磷含量较表层降幅达15.4%~52.4%;同时,深层40~60 cm土壤全磷、速效磷、有效钾含量整体偏低,表明杉木退化林地阔叶化改造后仍存在深层磷、钾养分限制。相关性分析表明,土壤最大持水量、毛管持水量和田间持水量与总孔隙度、毛管孔隙度呈显著正相关,与土壤容重呈显著负相关;有机碳含量与全氮、碱解氮、有效磷等养分指标呈显著正相关。这表明土壤孔隙结构决定了持水能力,有机质积累有助于提升养分有效性。综上,将杉木退化林改造为闽楠、木荷、赤皮青冈3种阔叶纯林,可显著改善表层土壤质量,但对深层土壤的改良作用有限。

关键词: 杉木, 改造, 珍贵乡土阔叶树, 土壤理化性质

Abstract: Soil quality and productivity usually decline with long-term monoculture of Cunninghamia lanceolata. To clarify the soil improvement potential of native broad-leaved tree species in subtropical regions on degraded C. lanceolata plantation, we focused on three kinds of broad-leaved monoculture of Phoebe bournei, Schima superba, and Cyclobalanopsis gilva, using C. lanceolata harvested plantation as control. We examined the responses of soil physicochemical properties in different soil layers (0-20, 20-40, and 40-60 cm) after transforming a pure Chinese fir forest into pure broad-leaved forests. The results showed that broad-leaved pure plantations improved the quality of surface soil (0-20 cm), with P. bournei pure plantation showing the greatest improvement in soil pore structure and water retention. Compared with the C. lanceolata pure plantation, soil total porosity, capillary porosity, capi-llary water-holding capacity and field water-holding capacity in the surface layer of P. bournei pure plantation increased by 6.4%-11.7%, while the mass water content was significantly increased by 28.7%. S. superba pure plantation showed obvious advantages in enhancing soil organic carbon and total nitrogen content, which were 2.8 and 3.6 times that of the C. lanceolata pure plantation, and 2.5 and 2.0 times that of the control, respectively. C. gilva pure plantation performed better in promoting available nutrients accumulation. The contents of alkali-hydrolyzable nitrogen and available phosphorus in the surface layer increased by 89.8% and 204.9% respectively compared with the C. lanceolata monoculture, and increased by 36.4% and 85.8% respectively compared with the control. With the deepening of soil layer, the improvement advantages of broad-leaved pure plantations significantly diminished. In the 40-60 cm soil layer of three broad-leaved pure plantation, soil bulk density increased by 8.7%-11.4% compared with the surface layer, while porosity, water-holding capacity, and the contents of soil organic carbon, total nitrogen, available nitrogen, and available phosphorus decreased by 15.4%-52.4% compared with the surface layer. The content of total phosphorus, available phosphorus, and available potassium in the 40-60 cm soil layer were generally low, indicating that there were still phosphorus and potassium limitations in the deep soil after the broad-leaved transformation of degraded C. lanceolata plantation. Correlation analysis showed that the maxi-mum water-holding capacity, capillary water-holding capacity and field water-holding capacity were significantly positively correlated with total porosity and capillary porosity, but significantly negatively correlated with soil bulk density. Soil organic carbon content was significantly positively correlated with total nitrogen, alkaline hydrolysable nitrogen, and available phosphorus, indicating that soil pore structure determined water holding capacity, while organic matter accumulation contributed to the enhancement of nutrient availability. Therefore, converting degraded C. lanceolata plantation into broad-leaved pure plantation of S. superba, P. bournei, and C. gilva, could significantly improve soil quality of surface layer, but the effect on deep soil remained limited.

Key words: Cunninghamia lanceolata, conversion, precious native broad-leaved tree, soil physical and chemical property