首页> 外文期刊>Frontiers in Plant Science >Trade-Offs Among Aboveground, Belowground, and Soil Organic Carbon Stocks Along Altitudinal Gradients in Andean Tropical Montane Forests
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Trade-Offs Among Aboveground, Belowground, and Soil Organic Carbon Stocks Along Altitudinal Gradients in Andean Tropical Montane Forests

机译:在Andean热带山地森林中的地上,地下和土壤有机碳股之间的折磨,地下和土壤有机碳储备

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Tropical montane forests (TMFs) play an important role as a carbon reservoir at a global scale. However, there is a lack of a comprehensive understanding on the variation in carbon storage across TMF compartments [namely aboveground biomass (AGB), belowground biomass (BGB), and soil organic matter] along altitudinal and environmental gradients and their potential trade-offs. This study aims to: 1) understand how carbon stocks vary along altitudinal gradients in Andean TMFs, and; 2) determine the influence of climate, particularly precipitation seasonality, on the distribution of carbon stocks across different forest compartments. The study was conducted in sixty 0.1 ha plots along two altitudinal gradients at the Podocarpus National Park (Ecuador) and Río Abiseo National Park (Peru). At each plot, we calculated the amount of carbon in AGB (i.e. aboveground carbon stock, AGC), BGB (i.e. belowground carbon stock, BGC), and soil organic matter (i.e. soil organic carbon stock, SOC). The mean total carbon stock was 244.76 ± 80.38 Mg ha ~(–1) and 211.51 ± 46.95 Mg ha ~(–1) in the Ecuadorian and Peruvian plots, respectively. Although AGC, BGC, and SOC showed different partitioning patterns along the altitudinal gradient both in Ecuador and Peru, total carbon stock did not change with altitude in either site. The combination of annual mean temperature and precipitation seasonality explained differences in the observed patterns of carbon stocks across forest compartments between the two sites. This study suggests that the greater precipitation seasonality of colder, higher altitudes may promote faster turnover rates of organic matter and nutrients and, consequently, less accumulation of SOC but greater AGC and BGC, compared to those sites with lesser precipitation seasonality. Our results demonstrate the capacity of TMFs to store substantial amounts of carbon and suggest the existence of a trade-off in carbon stocks among forest compartments, which could be partly driven by differences in precipitation seasonality, especially under the colder temperatures of high altitudes.
机译:热带蒙太金森林(TMFS)在全球范围内扮演碳库尔的重要作用。然而,沿着大自要的和环境梯度以及它们的潜在权衡,缺乏关于TMF隔室的碳储存的变化[即地上生物量(AGB),地下生物量(BGB)和土壤有机物质]的综合了解。本研究旨在:1)了解Anditude梯度的碳股如何变化,而且; 2)确定气候,特别是降水季节性,对不同林室碳股分配的影响。该研究沿着Podocarpus国家公园(厄瓜多尔)和RíoBiseo国家公园(秘鲁)的两个高度梯度进行了六十0.1公顷的曲折。在每种图中,我们计算了AgB(即,地上碳储备,AGC),BGB(即以下下碳储备,BGC)和土壤有机物(即土壤有机碳储备,SoC)中的碳量。厄瓜多尔和秘鲁地块的平均总碳储备分别为244.76±80.38 mg ha〜(-1)和211.51±46.95 mg哈〜(-1)。虽然AGC,BGC和SoC沿着厄瓜多尔和秘鲁的高度梯度显示出不同的分区图案,但总碳股不会在任何一个地方的高度变化。年平均温度和降水季节性的组合在两个地点之间的森林隔室中观察到的碳储量模式的差异。本研究表明,与具有较小沉淀季节性的地点相比,较高的较高海拔高度较高的季节性,较高的季节性较高的季节性,较高的季节性可能会促进有机质和营养素的更快的营业率和营养成分,因此SoC但更大的AGC和BGC的累积较少。我们的结果表明,TMFS储存大量碳的能力,并提出森林隔间中碳股中的权衡存在,这可以部分地由降水季节性的差异,特别是在高海拔的较冷温度下。

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