首页> 美国卫生研究院文献>PLoS Clinical Trials >Seasonal variations in carbon, nitrogen and phosphorus concentrations and C:N:P stoichiometry in different organs of a Larix principis-rupprechtii Mayr. plantation in the Qinling Mountains, China
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Seasonal variations in carbon, nitrogen and phosphorus concentrations and C:N:P stoichiometry in different organs of a Larix principis-rupprechtii Mayr. plantation in the Qinling Mountains, China

机译:华北落叶松不同器官碳,氮,磷浓度和C:N:P化学计量的季节性变化。秦岭的人工林

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摘要

Understanding how concentrations of elements and their stoichiometry change with plant growth and age is critical for predicting plant community responses to environmental change. We used long-term field experiments to explore how the leaf, stem and root carbon (C), nitrogen (N) and phosphorous (P) concentrations and their stoichiometry changed with growth and stand age in a L. principis-rupprechtii Mayr. plantation from 2012–2015 in the Qinling Mountains, China. Our results showed that the C, N and P concentrations and stoichiometric ratios in different tissues of larch stands were affected by stand age, organ type and sampling month and displayed multiple correlations with increased stand age in different growing seasons. Generally, leaf C and N concentrations were greatest in the fast-growing season, but leaf P concentrations were greatest in the early growing season. However, no clear seasonal tendencies in the stem and root C, N and P concentrations were observed with growth. In contrast to N and P, few differences were found in organ-specific C concentrations. Leaf N:P was greatest in the fast-growing season, while C:N and C:P were greatest in the late-growing season. No clear variations were observed in stem and root C:N, C:P and N:P throughout the entire growing season, but leaf N:P was less than 14, suggesting that the growth of larch stands was limited by N in our study region. Compared to global plant element concentrations and stoichiometry, the leaves of larch stands had higher C, P, C:N and C:P but lower N and N:P, and the roots had greater P and C:N but lower N, C:P and N:P. Our study provides baseline information for describing the changes in nutritional elements with plant growth, which will facilitates plantation forest management and restoration, and makes a valuable contribution to the global data pool on leaf nutrition and stoichiometry.
机译:了解元素的浓度及其化学计量如何随植物的生长和年龄而变化对于预测植物群落对环境变化的响应至关重要。我们使用了长期的野外实验,以研究L. principis-rupprechtii Mayr中叶片,茎和根的碳(C),氮(N)和磷(P)的浓度及其化学计量随生长和贮藏龄的变化。 2012-2015年在中国秦岭的人工林。我们的结果表明,落叶松林分不同组织中碳,氮和磷的浓度以及化学计量比受林分年龄,器官类型和采样月份的影响,并且在不同生长季节与林分年龄的增加表现出多重相关性。通常,叶片C和N的浓度在快速生长季节最大,而叶片P的浓度在早期生长季节最大。然而,在生长过程中,没有观察到茎和根中C,N和P浓度的明显季节性趋势。与N和P相反,器官特异性C浓度几乎没有差异。叶片N:P在快速生长的季节最大,而C:N和C:P在生长的晚期最大。在整个生长季中,茎和根的C:N,C:P和N:P均未观察到明显的变化,但叶片N:P小于14,表明在我们的研究中落叶松林的生长受到N的限制。区域。与全球植物元素浓度和化学计量相比,落叶松林的叶片具有较高的C,P,C:N和C:P,但具有较低的N和N:P,而根部具有较高的P和C:N,但具有较低的N,C :P和N:P。我们的研究为描述营养成分随植物生长的变化提供了基准信息,这将有助于人工林的管理和恢复,并为全球叶片营养和化学计量数据库做出了宝贵贡献。

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