Arid
DOI10.1002/ece3.3283
Foliar nutrient resorption patterns of four functional plants along a precipitation gradient on the Tibetan Changtang Plateau
Zhao, Guangshuai1,2; Shi, Peili1,3; Wu, Jianshuang1,4; Xiong, Dingpeng1; Zong, Ning1; Zhang, Xianzhou1,3
通讯作者Shi, Peili
来源期刊ECOLOGY AND EVOLUTION
ISSN2045-7758
出版年2017
卷号7期号:18页码:7201-7212
英文摘要

Nutrient resorption from senesced leaves as a nutrient conservation strategy is important for plants to adapt to nutrient deficiency, particularly in alpine and arid environment. However, the leaf nutrient resorption patterns of different functional plants across environmental gradient remain unclear. In this study, we conducted a transect survey of 12 communities to address foliar nitrogen (N) and phosphorus (P) resorption strategies of four functional groups along an eastward increasing precipitation gradient in northern Tibetan Changtang Plateau. Soil nutrient availability, leaf nutrient concentration, and N:P ratio in green leaves ([N:P](g)) were linearly correlated with precipitation. Nitrogen resorption efficiency decreased, whereas phosphorus resorption efficiency except for sedge increased with increasing precipitation, indicating a greater nutrient conservation in nutrient-poor environment. The surveyed alpine plants except for legume had obviously higher N and P resorption efficiencies than the world mean levels. Legumes had higher N concentrations in green and senesced leaves, but lowest resorption efficiency than nonlegumes. Sedge species had much lower P concentration in senesced leaves but highest P resorption efficiency, suggesting highly competitive P conservation. Leaf nutrient resorption efficiencies of N and P were largely controlled by soil and plant nutrient, and indirectly regulated by precipitation. Nutrient resorption efficiencies were more determined by soil nutrient availability, while resorption proficiencies were more controlled by leaf nutrient and N:P of green leaves. Overall, our results suggest strong internal nutrient cycling through foliar nutrient resorption in the alpine nutrient-poor ecosystems on the Plateau. The patterns of soil nutrient availability and resorption also imply a transit from more N limitation in the west to a more P limitation in the east Changtang. Our findings offer insights into understanding nutrient conservation strategy in the precipitation and its derived soil nutrient availability gradient.


英文关键词environmental controls leaf nutrient resorption N:P nitrogen and phosphorus plant functional group precipitation gradient soil nutrient availability stoichiometry Tibetan Changtang Plateau
类型Article
语种英语
国家Peoples R China ; Germany
收录类别SCI-E
WOS记录号WOS:000411341800007
WOS关键词STRUCTURAL EQUATION MODEL ; NITROGEN RESORPTION ; NORTHERN CHINA ; SEMIARID ECOSYSTEMS ; TERRESTRIAL PLANTS ; SENESCING LEAVES ; SOIL-NITROGEN ; DESERT SHRUB ; LEAF-N ; PHOSPHORUS
WOS类目Ecology ; Evolutionary Biology
WOS研究方向Environmental Sciences & Ecology ; Evolutionary Biology
来源机构中国科学院地理科学与资源研究所
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/198510
作者单位1.Chinese Acad Sci, Key Lab Ecosyst Network Observat & Modelling, Inst Geog Sci & Nat Resources Res, Beijing, Peoples R China;
2.China Natl Forestry Econ & Dev Res Ctr, Beijing, Peoples R China;
3.Univ Chinese Acad Sci, Coll Resource & Environm, Beijing, Peoples R China;
4.Free Univ Berlin, Funct Biodivers, Dahlem Ctr Plant Sci, Berlin, Germany
推荐引用方式
GB/T 7714
Zhao, Guangshuai,Shi, Peili,Wu, Jianshuang,et al. Foliar nutrient resorption patterns of four functional plants along a precipitation gradient on the Tibetan Changtang Plateau[J]. 中国科学院地理科学与资源研究所,2017,7(18):7201-7212.
APA Zhao, Guangshuai,Shi, Peili,Wu, Jianshuang,Xiong, Dingpeng,Zong, Ning,&Zhang, Xianzhou.(2017).Foliar nutrient resorption patterns of four functional plants along a precipitation gradient on the Tibetan Changtang Plateau.ECOLOGY AND EVOLUTION,7(18),7201-7212.
MLA Zhao, Guangshuai,et al."Foliar nutrient resorption patterns of four functional plants along a precipitation gradient on the Tibetan Changtang Plateau".ECOLOGY AND EVOLUTION 7.18(2017):7201-7212.
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