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气候因素决定了大尺度下叶片养分性状的分布格局。

Climatic Factors Determine the Distribution Patterns of Leaf Nutrient Traits at Large Scales.

作者信息

Wang Xianxian, Wang Jiangfeng, Zhang Liuyang, Lv Chengyu, Liu Longlong, Zhao Huixin, Gao Jie

机构信息

College of Life Sciences, Xinjiang Normal University, Urumqi 830054, China.

Hubei Forestry Investigation and Planning Institute, No. 4, Zhuodaoquan South Road, Hongshan District, Wuhan 430070, China.

出版信息

Plants (Basel). 2022 Aug 21;11(16):2171. doi: 10.3390/plants11162171.

Abstract

Leaf nutrient content and its stoichiometric relationships (N/P ratio) are essential for photosynthesis and plant growth and development. Previous studies on leaf nutrient-related functional traits have mainly focused on the species level and regional scale, but fewer studies have investigated the distribution patterns of the leaf N and P contents (LN, LP) and N/P ratios (N/P) in communities and their controlling factors at a large scale; therefore, we used LN, LP, and N/P data at 69 sites from 818 forests in China. The results showed significant differences (p < 0.05) in the LN, LP, and N/P at different life forms (tree, shrub, and herb). Neither LN, LP, nor N/P ratios showed significant patterns of latitudinal variation. With the increase in temperature and rainfall, the LN, LP, and leaf nutrient contents increased significantly (p < 0.001). Across life forms, LN at different life forms varied significantly and was positively correlated with soil P content (p < 0.001). The explanatory degree of climatic factors in shaping the spatial variation patterns of LN and N/P was higher than that of the soil nutrient factors, and the spatial variation patterns of the leaf nutrient traits of different life forms were shaped by the synergistic effects of climatic factors and soil nutrient factors.

摘要

叶片养分含量及其化学计量关系(N/P比)对于光合作用以及植物的生长发育至关重要。先前关于叶片养分相关功能性状的研究主要集中在物种水平和区域尺度,但较少有研究在大尺度上探究群落中叶片氮(LN)、磷(LP)含量及N/P比(N/P)的分布格局及其控制因素;因此,我们使用了来自中国818个森林69个站点的LN、LP和N/P数据。结果表明,不同生活型(乔木、灌木和草本)的LN、LP和N/P存在显著差异(p < 0.05)。LN、LP以及N/P比均未呈现出显著的纬度变化格局。随着温度和降雨量的增加,LN、LP和叶片养分含量显著增加(p < 0.001)。在不同生活型中,LN差异显著,且与土壤磷含量呈正相关(p < 0.001)。气候因子对LN和N/P空间变异格局的解释程度高于土壤养分因子,不同生活型叶片养分性状的空间变异格局是由气候因子和土壤养分因子的协同作用塑造的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e44d/9415000/b2dc7a94f158/plants-11-02171-g001.jpg

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