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DOI10.1016/j.foreco.2020.117896
Tree growth rate and soil nutrient status determine the shift in nutrient-use strategy of Chinese fir plantations along a chronosequence
Wu H.; Xiang W.; Ouyang S.; Xiao W.; Li S.; Chen L.; Lei P.; Deng X.; Zeng Y.; Zeng L.; Peng C.
发表日期2020
ISSN0378-1127
卷号460
英文摘要Nutrient resorption is a key nutrient-use strategy exhibited by perennial plants to overcome nutrient limitations and meet their nutritional demands. However, the factors that drive nutrient resorption with stand development remain largely unknown. In this study, we examined how a nutrient source (soil) and sink (trees) affected the resorption efficiency (RE) of nitrogen (N) and phosphorus (P). Fresh leaves, leaf litterfall, and soil samples were collected from a chronosequence of Chinese fir (Cunninghamia lanceolata (Lamb.) Hook., Taxodiaceae) plantations at the ages of 3, 8–11, 16, 20, 25, 29, and 32 years. The N and P concentrations in stems, branches, leaves, coarse roots, and fine roots, stocks of N and P in soils, and the relative growth rate (RGR) of trees were measured. Fresh leaf N and P concentrations and RE decreased with stand age, while the N:P ratio in fresh leaves as well as the N and P concentrations in leaf litterfall increased. The RGR of trees declined with stand age. Soil P stocks increased but soil N stocks slightly decreased with stand age. A variation partitioning analysis revealed that the combined effect of RGR and soil P stocks on the RE of P (PRE) was stronger than the individual effect of each factor, while the RE of N (NRE) was greatly affected by the individual effect of RGR. With increasing age, Chinese fir plantations shifted from N-limiting to P-limiting conditions, and the nutrient-use strategy changed from “conservative consumption” to “resource spending”. These patterns were co-regulated by the tree growth rate and soil nutrient status. Thus, supply-demand relationships reflected the nutrient cycling status and could provide valuable information for sustainable nutrient management practices in tree plantations. © 2020 Elsevier B.V.
英文关键词Nutrient cycling; Plant nutrient requirement; Plantation sustainable management; Soil nutrient supply
语种英语
scopus关键词Forestry; Plants (botany); Soils; Cunninghamia lanceolata; Nutrient cycling; Plant nutrients; Relative growth rate; Resorption efficiencies; Soil nutrients; Supply-demand relationships; Sustainable management; Nutrients; chronosequence; concentration (composition); coniferous tree; growth rate; litterfall; nutrient cycling; nutrient dynamics; nutrient limitation; nutrient use; phosphorus; plantation forestry; sampling; soil nutrient; source-sink dynamics; sustainability; Chinese; Forestry; Growth Rate; Leaves; Management; Nutrients; Plantations; Soil; Cunninghamia lanceolata; Cupressaceae
来源期刊Forest Ecology and Management
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/155474
作者单位Faculty of Life Science and Technology, Central South University of Forestry and Technology, Changsha, Hunan Province 410004, China; Huitong National Station for Scientific Observation and Research of Chinese Fir Plantation Ecosystem in Hunan Province, Huitong, 438107, China; Key Laboratory of Forest Ecology and Environment, State Forestry Administration, Research Institute of Forest Ecology, Environment and Protection, Chinese Academy of Forestry, Beijing, 100091, China; Institute of Geographic Sciences and Natural Resources Research, Chinese Academy of Sciences, Beijing, 100101, China; Institute of Environment Sciences, Department of Biological Sciences, University of Québec at Montréal, Montréal, QC H3C 3P8, Canada
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GB/T 7714
Wu H.,Xiang W.,Ouyang S.,et al. Tree growth rate and soil nutrient status determine the shift in nutrient-use strategy of Chinese fir plantations along a chronosequence[J],2020,460.
APA Wu H..,Xiang W..,Ouyang S..,Xiao W..,Li S..,...&Peng C..(2020).Tree growth rate and soil nutrient status determine the shift in nutrient-use strategy of Chinese fir plantations along a chronosequence.Forest Ecology and Management,460.
MLA Wu H.,et al."Tree growth rate and soil nutrient status determine the shift in nutrient-use strategy of Chinese fir plantations along a chronosequence".Forest Ecology and Management 460(2020).
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