卢络天, 黄文楠, 曾佳怡, 叶喜阳, 徐秋芳. 校园银杏树叶早衰变黄以及不同树个体间差异研究[J]. 土壤通报, 2023, 54(4): 822 − 830. DOI: 10.19336/j.cnki.trtb.2022040807
引用本文: 卢络天, 黄文楠, 曾佳怡, 叶喜阳, 徐秋芳. 校园银杏树叶早衰变黄以及不同树个体间差异研究[J]. 土壤通报, 2023, 54(4): 822 − 830. DOI: 10.19336/j.cnki.trtb.2022040807
LU Luo-tian, HUANG Wen-nan, ZENG Jia-yi, YE Xi-yang, XU Qiu-fang. Causes of Premature Aging and Yellowing of Ginkgo biloba Leaves and Differences among Trees in Campus[J]. Chinese Journal of Soil Science, 2023, 54(4): 822 − 830. DOI: 10.19336/j.cnki.trtb.2022040807
Citation: LU Luo-tian, HUANG Wen-nan, ZENG Jia-yi, YE Xi-yang, XU Qiu-fang. Causes of Premature Aging and Yellowing of Ginkgo biloba Leaves and Differences among Trees in Campus[J]. Chinese Journal of Soil Science, 2023, 54(4): 822 − 830. DOI: 10.19336/j.cnki.trtb.2022040807

校园银杏树叶早衰变黄以及不同树个体间差异研究

Causes of Premature Aging and Yellowing of Ginkgo biloba Leaves and Differences among Trees in Campus

  • 摘要:   目的  为探索银杏树叶早衰变黄以及不同树之间差异原因。
      方法  选择距离相邻、叶色差异明显的7组树(A组绿色、B组黄色),分别于5月和10月份采集叶片、10月采集对应的土壤样品,分析叶片色素、可溶性糖和氮磷钾含量,以及土壤容重、含水率、pH和有效氮磷钾含量。
      结果  5月份银杏叶片A、B两组颜色及叶绿素总量没有差异,所有叶片中叶绿素占比均高于60%,A组叶片类胡萝卜素和花色素苷含量显著高于(P < 0.05)B组;A组银杏叶片全氮含量显著高于B组(P < 0.05)。10月份时银杏叶片A、B两组颜色差异明显,A组叶绿素a和b含量、及其总量均显著高于B组(P < 0.05),A和B组叶绿素总量占比分别为58.3%和48.8%,其余色素指标均无显著差异。A组叶片全氮含量平均值(14.07 g kg−1)高于B组(12.73 g kg−1),分别比5月份下降了34.4%和32.2%。A、B两组之间土层10 ~ 20 cm的容重和含水率差异显著,土壤养分差异不显著,但其含量丰富。
      结论  叶片早衰变黄以及不同树个体之间差异的原因是植株氮、磷水平偏低,主要是土壤坚实影响植物养分吸收。建议校园管理处重点疏松土壤,增加氮素供应。

     

    Abstract:
      Objective  The paper aims to explore the causes of premature aging and early yellowing between different trees.
      Method  Seven pairs of adjacent trees, with group A leaf being in green color and group B in yellow color at the time of September, were selected for leaves sampling in May and October respectively, and soil sampling in October. The leaf with parameters of pigments, soluble sugar and nitrogen, phosphorus and potassium were determined, and including the soil bulk density, moisture, pH and available nitrogen, phosphorus and potassium.
      Result  There were no differences in leaf color and total chlorophyll content between group A and B in May. Total chlorophyll contents in all leaves exceeded 60%. Group A has more carotenoid and anthocyanin than group B (P < 0.05), same as the total nitrogen (P < 0.05). However, both the leaf color and amount of chlorophyll a and b were significantly different between groups A and B in October, with group B being in less green color and lower chlorophyll content (P < 0.05). The total amounts of chlorophyll in groups A and B were 58.3% and 48.8%, while other pigment indices had no difference. The average total nitrogen in group A (14.07 g kg−1) was higher than that in group B (12.73 g kg−1), which were 34.4% and 32.2% lower than that in May. There were significant differences in bulk density and water content of soil layer 10-20cm between groups A and B, but no differences in soil nutrients which was generally at abundant level.
      Conclusion  The premature yellowing and differences in leaf color and chlorophyll among group A and B were connected with low nitrogen and phosphorus levels in leaf, which was the result of nutrient absorption disorder caused by compact soil. It was suggested that the campus management office to focus on soil loosen and soil nitrogen supply.

     

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