Effects of tree size and organ age on variations in carbon, nitrogen, and phosphorus stoichiometry in Pinus koraiensis

IF 3.4 2区 农林科学 Q1 FORESTRY Journal of Forestry Research Pub Date : 2024-02-24 DOI:10.1007/s11676-024-01705-x
Yanjun Wang, Guangze Jin, Zhili Liu
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Abstract

Carbon (C), nitrogen (N), and phosphorus (P) are of fundamental importance for growth and nutrient dynamics within plant organs and deserve more attention at regional to global scales. However, our knowledge of how these nutrients vary with tree size, organ age, or root order at the individual level remains limited. We determined C, N, and P contents and their stoichiometric ratios (i.e., nutrient traits) in needles, branches, and fine roots at different organ ages (0–3-year-old needles and branches) and root orders (1st–4th order roots) from 64 Pinus koraiensis of varying size (Diameter at breast height ranged from 0.3 to 100 cm) in northeast China. Soil factors were also measured. The results show that nutrient traits were regulated by tree size, organ age, or root order rather than soil factors. At a whole-plant level, nutrient traits decreased in needles and fine roots but increased in branches with tree size. At the organ level, age or root order had a negative effect on C, N, and P and a positive effect on stoichiometric ratios. Our results demonstrate that nutrient variations are closely related to organ-specific functions and ecophysiological processes at an individual level. It is suggested that the nutrient acquisition strategy by younger trees and organ fractions with higher nutrient content is for survival. Conversely, nutrient storage strategy in older trees and organ fractions are mainly for steady growth. Our results clarified the nutrient utilization strategies during tree and organ ontogeny and suggest that tree size and organ age or root order should be simultaneously considered to understand the complexities of nutrient variations.

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树木大小和器官年龄对柯来松碳、氮、磷化学计量变化的影响
碳(C)、氮(N)和磷(P)对植物器官内的生长和养分动态至关重要,值得在区域乃至全球范围内给予更多关注。然而,我们对这些养分在个体水平上如何随树木大小、器官年龄或根序而变化的了解仍然有限。我们测定了中国东北地区64棵不同大小(胸径从0.3厘米到100厘米不等)的柯莱松在不同树龄(0-3年生针叶和枝条)和不同根序(1-4阶根)的针叶、枝条和细根中C、N和P的含量及其化学计量比(即养分性状)。同时还测量了土壤因子。结果表明,养分性状受树木大小、器官年龄或根序而非土壤因素的调节。在全株水平上,针叶和细根的养分性状随树的大小而减少,但枝条的养分性状则随树的大小而增加。在器官水平上,树龄或根序对碳、氮和磷有负面影响,而对化学计量比有正面影响。我们的研究结果表明,在个体水平上,养分变化与器官特异性功能和生态生理过程密切相关。结果表明,年轻树木和养分含量较高的器官部分的养分获取策略是为了生存。相反,老树和器官部分的营养储存策略主要是为了稳定生长。我们的研究结果阐明了树木和器官在生长发育过程中的养分利用策略,并建议同时考虑树木大小和器官年龄或根序,以了解养分变化的复杂性。
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来源期刊
CiteScore
7.30
自引率
3.30%
发文量
2538
期刊介绍: The Journal of Forestry Research (JFR), founded in 1990, is a peer-reviewed quarterly journal in English. JFR has rapidly emerged as an international journal published by Northeast Forestry University and Ecological Society of China in collaboration with Springer Verlag. The journal publishes scientific articles related to forestry for a broad range of international scientists, forest managers and practitioners.The scope of the journal covers the following five thematic categories and 20 subjects: Basic Science of Forestry, Forest biometrics, Forest soils, Forest hydrology, Tree physiology, Forest biomass, carbon, and bioenergy, Forest biotechnology and molecular biology, Forest Ecology, Forest ecology, Forest ecological services, Restoration ecology, Forest adaptation to climate change, Wildlife ecology and management, Silviculture and Forest Management, Forest genetics and tree breeding, Silviculture, Forest RS, GIS, and modeling, Forest management, Forest Protection, Forest entomology and pathology, Forest fire, Forest resources conservation, Forest health monitoring and assessment, Wood Science and Technology, Wood Science and Technology.
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