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近地保护对浙江安息香叶片和土壤生态化学计量的影响

Effect of Near Situ Conservation on Leaf and Soil Ecological Stoichiometry of Styrax zhejiangensis

  • 摘要: 浙江安息香(Styrax zhejiangensis)为浙江省特有极小种群野生保护植物,开展其叶片与根周土壤碳(C)、氮(N)、磷(P)含量及其化学计量比,可为该物种林地土壤养分管理提供基础数据。本研究采集近地保护点Ⅰ、近地保护点Ⅱ和原生境的浙江安息香叶片和根周土壤样品,测定并分析其C、N、P含量及化学计量比。结果表明:浙江安息香叶片C、N、P含量分别介于440.03~444.65、29.96~34.93、1.65~1.77 g·kg−1, 叶片C∶N、C∶P、N∶P分别为12.73~14.70、248.60~268.95、17.84~21.13,与原生境相比,近地保护点Ⅱ的叶片N含量显著升高(P<0.05),叶片C∶N显著降低(P<0.05);土壤C、N、P含量分别为27.49~38.45、0.99~1.67、1.27~1.30 g·kg−1,C∶N、C∶P、N∶P分别为21.96~27.77、21.59~30.28、0.78~1.31,近地保护点Ⅱ的土壤C、N含量及C∶P显著低于原生境(P<0.05),土壤N∶P显著低于其他保护点(P<0.05),C∶N则显著高于近地保护点Ⅰ(P<0.05)。叶片N与土壤C、N、C∶P、N∶P之间呈显著负相关(P<0.05),叶片C∶N与土壤C、N含量及C∶P、N∶P呈极显著正相关(P<0.01)。综上,相较于原生境,浙江安息香近地保护生境的土壤C、N、C∶P、N∶P及叶片C∶N较低,但并没有改变土壤P是其生长的限制性营养元素的特性,后续土壤管理实践中,可考虑采取针对性措施改善土壤P素供应。

     

    Abstract: Styrax zhejiangensis endemic to Zhejiang Province is a wild plant species with an extremely small population, Investigating the carbon (C), nitrogen (N), and phosphorus (P) contents and their stoichiometric ratios in leaves and rhizosphere soils can provide essential baseline data for soil nutrient management in its forest land habitats. In this study, leaf and rhizosphere soil samples of S. Zhejiangensis were collected from two near situ conservation sites (Site Ⅰ and Site Ⅱ) and its native habitat. The C, N, and P contents and their stoichiometric ratios were determined and analyzed. The results showed that leaf C, N and P contents ranged from 440.03~444.65, 29.96~34.93, and 1.65~1.77 g·kg−1, respectively, while C∶N, C∶P and N∶P ratios of leaves ranged from 12.73~14.70, 248.60~268.95, and 17.84~21.13, respectively. Compared with the native habitat, leaf N content at near-situ conservation Site Ⅱ was significantly higher (P<0.05), whereas leaf C∶N ratio significantly decreased (P<0.05). Soil C, N and P contents ranged from 27.49~38.45, 0.99~1.67, and 1.27~1.30 g·kg−1, respectively, with soil C∶N, C∶P and N∶P ratios ranging from 21.96~27.77, 21.59~30.28, and 0.78~1.31, respectively. At near-situ conservation Site Ⅱ, soil C and N contents, as well as soil C∶P ratio, were significantly lower than those in the native habitat; soil N∶P was significantly lower than that at the other two sites (P<0.05), while soil C:N ratio was significantly higher than that at Site Ⅰ (P<0.05). Leaf N content was significantly negatively correlated with soil C, N, C∶P ratio and N:P ratio (P<0.05), whereas leaf C∶N ratio was highly significant positive correlated with soil C and N contents, as well as soil C∶P and N∶P (P<0.01). In summary, compared with the native habitat, the near-situ conservation habitats of S. zhejiangensis exhibited lower soil C, N, C∶P ratio, N:P ratio, along with lower leaf C∶N, which, however, did not alter the property that soil P remained the primary limiting nutrient element for its growth. In future soil management practices, targeted measures may be considered to improve soil phosphorus availability.

     

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