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生态学杂志 ›› 2012, Vol. 31 ›› Issue (09): 2209-2216.

• 研究报告 • 上一篇    下一篇

地表连年覆盖雷竹林叶片养分利用特征

刘亚迪1,范少辉1**,蔡春菊1,刘广路1,肖复明2,张大鹏1   

  1. 1国际竹藤中心, 竹藤科学与技术重点实验室, 北京 100102; 2江西省林业科学院, 南昌 330032)
  • 出版日期:2012-09-10 发布日期:2012-09-10

Nutrient use characteristics of Phyllostachys praecox leaves as affected by continuous year soil-surface mulching.

LIU Ya-di1, FAN Shao-hui1**, CAI Chun-ju1, LIU Guang-lu1, XIAO Fu-ming2, ZHANG Da-peng1   

  1. (1Key Laboratory for Bamboo and Rattan, International Center for Bamboo and Rattan, Beijing 100102, China; 2Jiangxi Academy of Forestry, Nanchang 330032, China)
  • Online:2012-09-10 Published:2012-09-10

摘要: 对连续覆盖雷竹林换叶期林地土壤和叶片养分利用效率、养分再吸收效率进行了研究,旨在阐明地表连年覆盖栽培对雷竹林养分利用特征的影响。结果表明:连续覆盖3年雷竹林土壤N养分有效性、N素利用效率以及再吸收效率均显著性提高,雷竹林表现出较高的保存N养分的能力;土壤P元素有效性水平显著升高,而叶片P养分的利用效率显著降低,反映出叶片对土壤高P含量的适应策略,N、P养分利用效率之间存在显著的负相关关系(P<0.05);土壤K元素的有效性水平显著降低,竹林通过提高自身的K再吸收效率来维持养分的正常循环,再吸收效率高达95.8%;不同覆盖年限雷竹林Nm/Pm均<14,连续覆盖3年雷竹林Nm/Pm比值极显著下降,经推断是此时雷竹林对土壤有效P高吸收的结果。成熟叶片的Nm/Pm与N、P的再吸收效率均无显著相关性,Nm/Pm并不能很好地反映叶片在凋落前的养分再分配格局。

关键词: 立地类型, 地位指数, 数量化理论I, 非线性混合模型, 人工林

Abstract: To reveal the effects of continuous year soilsurface mulching on the nutrient use characteristics of Phyllostachys praecox leaves, this paper studied the leaf nutrient use efficiency and resorption efficiency in a P. praecox forest during refoliation across three years soil-surface mulching. With the mulching, both the soil nitrogen (N) availability and the P. praecox leaf N use efficiency and N resorption efficiency had a significant increase, showing a higher N-nutrientconserving ability of the forest. The soil phosphorus (P) availability increased significantly but the leaf P use efficiency was in adverse, reflecting the leaf adaptation strategy to high soil P content. There was a significant negative correlation between leaf N and P use efficiency. Opposite to soil N and P, soil potassium (K) had a significantly decreased availability. The leaf K resorption efficiency increased up to 95.8%, suggesting that the forest could maintain normal nutrient circulation through enhancing its leaf K resorption efficiency. The leaf Nm/Pm across the three years soil-surface mulching had a significant decrease, being less than 14, indicating the high capability of P. praecox leaves to absorb soil P within the three years soil-surface mulching. The matured leavesNm/Pm had no significant correlations with leaf N and P resorption efficiency, and thus, leaf Nm/Pm could not best reflect the nutrient resorption pattern of the P. praecox forest.

Key words: site type, site index, quantification theory I, nonlinear mixed model, plantation.