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水氮添加条件下高寒草甸主要植物种氮素吸收分配的同位素示踪研究
引用本文:邓建明,姚步青,周华坤,赵新全,魏晴,陈哲,王文颖.水氮添加条件下高寒草甸主要植物种氮素吸收分配的同位素示踪研究[J].植物生态学报,2014,38(2):116-124.
作者姓名:邓建明  姚步青  周华坤  赵新全  魏晴  陈哲  王文颖
作者单位:中国科学院西北高原生物研究所, 西宁 810001
兰州大学生命科学学院, 兰州 730000
青海师范大学生命与地理科学学院, 西宁 810008
中国科学院大学, 北京 100049
基金项目:国家重点基础研究发展计划(973计划)课题;国家自然科学基金;国家自然科学青年基金项目;中科院战略性先导科技专项子课题;国家科技支撑课题专题
摘    要:资源利用方式的分化可以减小物种间对相同资源的竞争,是群落物种多样性维持的主要机制。在全球变化背景下,土壤温度和水分条件的变化可能影响高寒草甸生态系统植物的氮素(N)营养。该实验在经N、水处理3年的高寒草甸开展,通过15NH415NO3的15N稳定性同位素注射,比较高寒草甸主要植物种对N、水处理的响应方式,以及N吸收能力、分配和根冠比特点,研究其营养吸收和资源分配方式的分化。结果发现不同植物种对N、水处理响应差异显著,N吸收能力、根N含量和根冠比等功能性状种间差异显著;回归分析发现植物种N吸收能力和根N含量之间的关系不显著,和根冠比之间呈显著线性负相关。说明高寒草甸生态系统不同植物种间N吸收具有生态位分化,并且存在N营养吸收能力和资源分配策略的权衡。

关 键 词:15N标记" target="_blank">15N标记')">15N标记    高寒草甸    N吸收    生态位分化    氮素添加    水分添加
收稿时间:2013-01-04

Nitrogen uptake and allocation characteristics of alpine meadow main species under water and nitrogen additions based on 15N isotope
DENG Jian-Ming,YAO Bu-Qing,ZHOU Hua-Kun,ZHAO Xin-Quan,WEI Qing,CHEN Zhe,WANG Wen-Ying.Nitrogen uptake and allocation characteristics of alpine meadow main species under water and nitrogen additions based on 15N isotope[J].Acta Phytoecologica Sinica,2014,38(2):116-124.
Authors:DENG Jian-Ming  YAO Bu-Qing  ZHOU Hua-Kun  ZHAO Xin-Quan  WEI Qing  CHEN Zhe  WANG Wen-Ying
Institution:Northwest Institute of Plateau Biology, Chinese Academy of Sciences, Xining 810001, China
School of Life Science, Lanzhou University, Lanzhou 730000, China
Department of Life and Geography Sciences, Qinghai Normal University, Xining 81008, China
University of Chinese Academy of Sciences, Beijing 100049, China
Abstract:Aims Resource-use differentiation among species, which can reduce species competition for the same resources, is the main mechanism to maintain species diversity. Changes in soil temperature and moisture conditions, in the context of global change, may affect nitrogen (N) nutrition of plants of alpine meadow ecosystems. Our objective is to compare the characteristics of N uptake and resource allocation of dominant species of alpine meadow with changes in soil N and water.
Methods An alpine meadow was treated with N and water addition for three years using the method of 15N isotope injection. We determined the growth responses of dominant species to the N and water additions, as well as the features of N uptake capacity, N allocation and root to shoot ratio.
Important findings The species showed significantly different responses to the N and water treatments, with respect to functional traits of species in N absorption capacity, root N content and root to shoot ratio. There was no significant relationship between N absorption capacity and root N content, whereas N absorption capacity was negatively correlated with root to shoot ratio across all plant species. These results indicated there was ecological niche differentiation in N uptake and a trade-off between the N absorption capacity and resource allocation strategies among species.
Keywords:15N label" target="_blank">15N label')" href="#">15N label  alpine meadow  N-absorption  niche differentiation  nitrogen addition  water addition
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