State Key Laboratory of Earth Surface Processes and Resource Ecology, Beijing Normal University, Beijing 100875, China.
College of Resources Science &Technology, Beijing Normal University, Beijing 100875, China.
Sci Rep. 2016 May 27;6:26845. doi: 10.1038/srep26845.
Most terrestrial ecosystems are nitrogen (N)-limited. The elucidation of the multivariate relationships among environmental drivers, leaf morphological traits, and foliar N of dominant species which are critical to the functioning of forests remains a critical challenge for ecologists. We sampled leaves of Quercus wutaishanica across a broad natural gradient in the Loess Plateau, China, and employed structural equation modelling to evaluate the causal pathways and the relative importance of drivers of the foliar N per unit area (Narea) and per unit mass (Nmass). We found that (1) Nmass and Narea were primarily affected by leaf morphological traits instead of environmental variables and that leaf morphological traits accounted for most of their variations; (2) the total soil potassium and phosphorus and mean annual precipitation had different effects on Nmass and Narea via different pathways and path coefficients, whereas the mean annual temperature and total soil N had non-significant effects on Nmass and Narea. Our results demonstrated that variations in Nmass and Narea within Quercus wutaishanica were strongly linked to their leaf morphological traits and that the leaf N was also influenced by mean annual precipitation and soil phosphorus and potassium instead of soil N in the Loess Plateau, China.
大多数陆地生态系统都受到氮(N)的限制。阐明环境驱动因素、叶片形态特征和优势物种叶片 N 之间的多元关系,对于森林的功能至关重要,但这仍然是生态学家面临的一个关键挑战。我们在中国黄土高原上的一个广泛的自然梯度上对槲栎的叶片进行了采样,并采用结构方程模型来评估叶片单位面积 N(Narea)和单位质量 N(Nmass)的驱动因素的因果途径和相对重要性。我们发现:(1)Nmass 和 Narea 主要受到叶片形态特征的影响,而不是环境变量,叶片形态特征解释了它们大部分的变异;(2)土壤全钾和全磷以及年平均降水量通过不同的途径和路径系数对 Nmass 和 Narea 产生不同的影响,而年平均温度和土壤全氮对 Nmass 和 Narea 没有显著影响。我们的结果表明,在槲栎内,Nmass 和 Narea 的变化与其叶片形态特征密切相关,叶片 N 也受到年平均降水量和土壤磷、钾的影响,而不是土壤 N 的影响,这在中国黄土高原上是如此。