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Correlation between leaf litter and fine root decomposition among subtropical tree species

机译:亚热带树种叶片凋落物与细根分解的相关性

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摘要

Elucidating the processes of leaf litter and fine root decomposition has been a major research focus, while how the correlation between leaf litter and fine root decomposition is unclear. We studied the in situ decomposition and N dynamics of leaf litter and fine root of four subtropical tree species (Pinus massoniana, Castanopsis hystrix, Michelia macclurei and Mytilaria laosensis) to determine whether leaf litter and fine root decomposition is correlated across species as well as which factors influence decomposition above versus below ground. Decomposition rate of leaf litter was related to that of fine root across species. The strong correlation between leaf litter and fine root decomposition rates arose largely for severalrnreasons. First, soil moisture had the similar influences on both leaf litter and fine root decomposition rates. Second, traits (i.e., initial Ca concentration) important to both leaf litter and fine root decomposition rates showed significant similarity among species. Third, initial P, N and aromatic C concentrations, and C/N ratio were uniquely important for fine root decomposition rate, while no unique traits for leaf litter decomposition rate. This also could account for the strong correlation between leaf litter and fine root decomposition rates. Our study suggests that among these subtropical trees, species effects on in situ decomposition rates of leaf litter and fine root are very similar. Thus, species differences in decomposition rates may be as large as they would be if faster decomposition of leaf litter was correlated with faster decomposition of fine root. N immobilization rate of leaf litter was unrelated to that of fine root across species. Our results help explain some important mechanisms by which tree species influence litter in situ decomposition.
机译:阐明凋落物和细根分解的过程一直是研究的重点,而如何分解凋落物和细根分解之间的相关性尚不清楚。我们研究了四种亚热带树种(马尾松,Cast栗,含笑含羞草和老挝Mytilaria laosensis)的凋落物和细根的原位分解和N动态,以确定叶片凋落物和细根分解在物种之间是否相关,以及因素会影响地面以上和地下的分解。叶片凋落物的分解速率与种间细根的分解速率有关。叶凋落物与细根分解率之间的强相关性在很大程度上是由几个原因引起的。首先,土壤水分对凋落物和细根分解率都有相似的影响。其次,对凋落物和细根分解率均重要的性状(即初始Ca浓度)在物种之间显示出显着相似性。第三,初始的P,N和芳香族C浓度以及C / N比对细根分解速率具有独特的重要性,而对凋落物分解速率没有独特的性状。这也可以解释叶子凋落物与优良根分解率之间的强相关性。我们的研究表明,在这些亚热带树木中,物种对凋落物和细根的原位分解速率的影响非常相似。因此,如果将凋落物的更快分解与细根的更快分解相关联,则分解速率的物种差异可能会很大。叶片凋落物的固氮率与跨物种细根的固氮率无关。我们的结果有助于解释树木物种影响凋落物原位分解的一些重要机制。

著录项

  • 来源
    《Water, Air, and Soil Pollution》 |2010年第4期|P.289-298|共10页
  • 作者单位

    Key Laboratory of Forest Ecology and Environment,China's State Forestry Administration,Institute of Forest Ecology, Environment and Protection,Chinese Academy of Forestry,No.l Dongxiaofu, Haidian District,Beijing 100091, People's Republic of China;

    rnKey Laboratory of Forest Ecology and Environment,China's State Forestry Administration,Institute of Forest Ecology, Environment and Protection,Chinese Academy of Forestry,No.l Dongxiaofu, Haidian District,Beijing 100091, People's Republic of China;

    rnSouth China Botanical Garden,the Chinese Academy of Sciences,Dinghu,Zhaoqing, Guangdong 526070, People's Republic of China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    microclimate; plant traits; species effects; litter decomposition; nitrogen dynamic;

    机译:小气候植物性状物种影响;垃圾分解;氮动态;

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