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首页> 外文期刊>Plant ecology & diversity >The productivity, allocation and cycling of carbon in forests at the dry margin of the Amazon forest in Bolivia. (Special Issue: Ecosystem dynamics of Amazonian and Andean forests.)
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The productivity, allocation and cycling of carbon in forests at the dry margin of the Amazon forest in Bolivia. (Special Issue: Ecosystem dynamics of Amazonian and Andean forests.)

机译:玻利维亚亚马逊森林干旱边缘森林的碳生产力,分配和循环。 (特刊:亚马孙和安第斯森林的生态系统动态。)

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Background: The dry transitional forests of the southern Amazonia have received little attention from a carbon cycling and ecosystem function perspective, yet they represent ecosystems that may be impacted by global climate change in the future. Aims: To compare the full carbon cycle for two 1-ha forest plots that straddle the ecotone between humid forest and dry forest in Amazonia, ca. 100 km from Santa Cruz, Bolivia. Methods: 2.5 years of measurements of the components of net primary production (NPP) and autotrophic respiration were collected. Results: Total NPP was 15.5+or-0.89 Mg C ha-1 year-1 at the humid site and 11.27+or-0.68 Mg C ha-1 year-1 at the dry site; a total Gross Primary Production (GPP) of 34.14 +or- 2.92 Mg C ha-1 year-1 and 26.88+or-2.70 Mg C ha-1 year-1 at the two sites. Carbon use efficiency for both sites was higher than reported for other Amazonian forests (0.45+or-0.05 and 0.42+or-0.05). Conclusions: Drier soil conditions selected for the dry deciduous tree species which had higher leaf photosynthesis and total GPP. NPP allocation patterns were similar at the two sites, suggesting that in terms of carbon allocation, the dry forests of the southern Amazonia behave as a scaled-down version of wetter humid forests.
机译:背景:从碳循环和生态系统功能的角度来看,亚马逊河南部的干旱过渡林很少受到关注,但它们代表了未来可能受到全球气候变化影响的生态系统。目的:比较加利福尼亚州亚马逊地区两片1公顷的森林地带的整个碳循环,这些森林地带位于湿地森林和干旱森林之间的过渡带。离玻利维亚圣克鲁斯100公里。方法:收集了2.5年的净初级生产(NPP)和自养呼吸的成分测量值。结果:湿润地区的总NPP为15.5+或-0.89 Mg C ha -1 年和11.27+或-0.68 Mg C ha -1 year -1 在干燥的地方;总初级生产总值(GPP)为34.14 +或-2.92 Mg C ha -1 年 -1 和26.88+或-2.70 Mg C ha -1 year -1 在两个站点上。两个站点的碳利用效率均高于其他亚马逊森林的报告(0.45+或-0.05和0.42+或-0.05)。结论:为干旱落叶乔木选择了较干燥的土壤条件,这些叶片具有较高的光合作用和总GPP。这两个地点的NPP分配模式相似,这表明,在碳分配方面,南部亚马逊地区的干旱森林表现为湿润湿润森林的缩小版本。

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