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High diversity of tropical peatland ecosystem types in the Pastaza-Marañón basin, Peruvian Amazonia

机译:秘鲁亚马逊河Pastaza-Marañón盆地的热带泥炭地生态系统类型高度多样性

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摘要

[1] Very little information exists on Amazonian peatlands with most studies on tropical peatlands concentrating on Southeast Asia. Here we describe diversity of Amazonian peatland ecosystems and consider its implications for the global diversity of tropical peatland ecosystems. Nine study sites were selected from within the most extensive wetland area of Peruvian Amazonia: the 120,000 km2 Pastaza-Marañón basin. Peat thickness was determined every 500 m from the edge toward the center of each site, and peat samples were collected from two cores per site. Samples from the entire central core and surface samples from the other core were analyzed for nutrient content. Topography of four peat deposits was measured. In order to study differences in vegetation, pixel values were extracted from a satellite image. The surface peat nutrient content of the peatlands varied from very nutrient-rich to nutrient-poor. Two of the peatlands measured for their topography were domed (5.4 and 5.8 m above the stream), one was gently sloping (1.4 m above the stream), and one was flat and occurred behind a 7 m high levee. Five different peatland vegetation types were detected on the basis of pixel values derived from the satellite image. The peat cores had considerable variation in nutrient content and showed different developmental pathways. In summary, the Pastaza-Marañón basin harbors a considerable diversity of previously undescribed peatland ecosystems, representing a gradient from atmosphere-influenced, nutrient-poor ombrotrophic bogs through to river-influenced, nutrient-rich swamps. Their existence affects the habitat diversity, carbon dynamics, and hydrology of the Amazonian lowlands, and they also provide an undisturbed analog for the heavily disturbed peatlands of Southeast Asia. Considering the factors threatening the Amazonian lowlands, there is an urgent need to investigate and conserve these peatland ecosystems, which may in the near future be among the very few undisturbed tropical ombrotrophic bogs remaining in the world.
机译:[1]关于亚马逊泥炭地的信息很少,大多数关于热带泥炭地的研究都集中在东南亚。在这里,我们描述了亚马逊泥炭地生态系统的多样性,并考虑了其对热带泥炭地生态系统全球多样性的影响。从秘鲁亚马逊河最广阔的湿地地区中选择了九个研究地点:面积为120,000 km2的Pastaza-Marañón盆地。从每个站点的边缘到中心每500 m确定一次泥炭厚度,并从每个站点的两个岩心中收集泥炭样本。分析了整个中央核的样品和另一个核的表面样品的营养成分。测量了四个泥炭沉积的形貌。为了研究植被的差异,从卫星图像中提取了像素值。泥炭地表泥炭的养分含量从极富营养到极贫营养不等。测量地形的两个泥炭地为半球形(在溪流上方5.4和5.8 m),一个缓慢倾斜(在溪流上方1.4 m),一个平坦,位于7 m高的堤坝后面。根据卫星图像得出的像素值,检测到五种不同的泥炭地植被类型。泥炭芯的养分含量差异很大,并显示出不同的发育途径。总之,Pastaza-Marañón盆地拥有大量以前未被描述的泥炭地生态系统,代表着从受大气影响的营养贫瘠的营养沼泽到受河流影响的富营养沼泽的梯度。它们的存在影响着亚马逊低地的生境多样性,碳动态和水文状况,它们还为东南亚受严重干扰的泥炭地提供了不受干扰的类似物。考虑到威胁亚马孙低地的因素,迫切需要研究和保护这些泥炭地生态系统,这些泥炭地生态系统可能会在不久的将来成为世界上极少数不受干扰的热带非营养型沼泽之一。

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    Lhteenoja, O.; Page, S.;

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  • 年度 2011
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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