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一个全球陆地植物叶片氮磷浓度配对的数据库。

A global database of paired leaf nitrogen and phosphorus concentrations of terrestrial plants.

作者信息

Tian Di, Kattge Jens, Chen Yahan, Han Wenxuan, Luo Yongkai, He Jinsheng, Hu Huifeng, Tang Zhiyao, Ma Suhui, Yan Zhengbing, Lin Quanhong, Schmid Bernhard, Fang Jingyun

机构信息

College of Life Sciences, Capital Normal University, Beijing, 100048, China.

Institute of Ecology, College of Urban and Environmental Sciences, and Key Laboratory for Earth Surface Processes of the Ministry of Education, Peking University, Beijing, 100871, China.

出版信息

Ecology. 2019 Sep;100(9):e02812. doi: 10.1002/ecy.2812. Epub 2019 Jul 30.

Abstract

Nitrogen (N) and phosphorus (P) are essential components of the basic cell structure of plants. In particular, leaf N and P concentrations and their stoichiometric relationship largely determine the photosynthesis, growth, reproduction, and ecophysiological processes of plants. As important leaf functional traits, leaf N and P concentrations and their stoichiometric relationship play vital roles in indicating plant nutrient-use strategies and their evolution in terrestrial ecosystems. They also influence physiological and ecological processes in leaves (e.g., growth rate and energy metabolism) and productivity (e.g., net primary production and net ecosystem production) at ecosystem level. However, the lack of a comprehensive data set containing paired leaf N and P concentration records has distinctly limited research on nutrient stoichiometry and leaf functional traits. Here, we provide a global database of paired records of leaf N and P concentrations. A total of 11,354 individual records were acquired spanning 1,291 sites worldwide, including 201 families, 1,265 genera, and 3,227 species. The records span a latitudinal range of 45.28 °S to 68.35 °N and a longitudinal range of 155.5 °W to 168.0 °E. The variables provided for each individual record are (1) geographical location (longitude, latitude, and altitude); (2) matched leaf N and P concentrations and N:P ratio; (3) taxonomic information (family, genera, and species); (4) life form (angiosperm/gymnosperm, monocotyledonous/dicotyledonous and woody plants/herbaceous plants; note that woody plants were further divided into coniferous, deciduous broad-leaved, and evergreen broad-leaved woody species and that herbaceous plants were further divided into annual and perennial species); (5) mean annual temperature (MAT) and mean annual precipitation (MAP); and (6) soil N and P concentrations and pH value in some records. To date, this database is the world's largest database of paired leaf N and P concentrations, which contains matched information of geographical location, environmental factors, and taxa. We believe that the database will play a fundamental and crucial part of ecological stoichiometric studies. There are no copyright restrictions. When using this database, we kindly request that you cite this article, respecting all the authors' hard work during sample collection and data compilation.

摘要

氮(N)和磷(P)是植物基本细胞结构的重要组成部分。特别是,叶片氮和磷的浓度及其化学计量关系在很大程度上决定了植物的光合作用、生长、繁殖和生态生理过程。作为重要的叶片功能性状,叶片氮和磷的浓度及其化学计量关系在指示陆地生态系统中植物养分利用策略及其演化方面发挥着至关重要的作用。它们还影响叶片的生理和生态过程(如生长速率和能量代谢)以及生态系统水平的生产力(如净初级生产力和净生态系统生产力)。然而,缺乏包含配对的叶片氮和磷浓度记录的综合数据集,明显限制了对养分化学计量和叶片功能性状的研究。在此,我们提供了一个全球叶片氮和磷浓度配对记录数据库。共获取了来自全球1291个站点的11354条个体记录,包括201个科、1265个属和3227个物种。这些记录的纬度范围为南纬45.28°至北纬68.35°,经度范围为西经155.5°至东经168.0°。为每条个体记录提供的变量包括:(1)地理位置(经度、纬度和海拔);(2)配对的叶片氮和磷浓度以及氮磷比;(3)分类信息(科、属和种);(4)生活型(被子植物/裸子植物、单子叶植物/双子叶植物以及木本植物/草本植物;注意,木本植物进一步分为针叶、落叶阔叶和常绿阔叶木本物种,草本植物进一步分为一年生和多年生物种);(5)年平均温度(MAT)和年平均降水量(MAP);以及(6)部分记录中的土壤氮和磷浓度及pH值。迄今为止,该数据库是世界上最大的叶片氮和磷浓度配对数据库,包含地理位置、环境因素和分类群的配对信息。我们相信该数据库将在生态化学计量学研究中发挥基础性和关键性作用。本数据库无版权限制。使用本数据库时,恳请引用本文,以尊重所有作者在样本采集和数据编纂过程中的辛勤工作。

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