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首页> 外文期刊>Forest Ecology and Management >Too rare for non-timber resource harvest? Meso-scale composition and distribution of arborescent palms in an Amazonian sustainable-use forest
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Too rare for non-timber resource harvest? Meso-scale composition and distribution of arborescent palms in an Amazonian sustainable-use forest

机译:对于非木材资源收获来说太罕见了吗?亚马孙可持续利用森林中乔木的中尺度组成和分布

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Arborescent palms can provide an important source of non-timber forest products (NTFPs) within tropical forest REDD+ frameworks. To identify the NTFP potential of arborescent palms, we examined mesoscale patterns of abundance and distribution within a sustainable-use protected area in the eastern Brazilian Amazon. To understand the environmental correlates of observed patterns we evaluated the effects of topography, hydrography and geographic space on the presence, density and biomass of adult arborescent palms. Adult palms were sampled in 30 (250 x 20 m) plots systematically distributed within a 25-km(2) grid. Topographic and hydrographic variables were derived from a remotely sensed digital elevation model. Spatial correlations in the explanatory and response variables were examined using Mantel tests and GLMs. To test for evidence of dispersal limitation, semi-variograms were used to examine spatial patterns in GLM residuals. Adult arborescent palms were rare occurring in only 12 of the 30 plots. In total, we recorded 118 individuals from six species (Bactris maraja, Euterpe oleracea, Iriartella setigera, Oenocarpus bacaba, Oenocarpus bataua and Oenocarpus minor). This corresponded to a mean live above-ground biomass per plot of 0.85 Mg ha(-1) (range: 0-28.1 Mg ha(-1)). Hydrographic and topographic variables suggest that environmental conditions are suitable for E. oleracea, an economically important species. The presence, biomass, and density of palms were uncorrelated with geographic distances among plots. The hydrographic model significantly explained variation in palm presence and biomass, whereas density was only explained by the topographic model. Our findings indicate that arborescent palms are currently too rare to be efficiently harvested as NTFPs in the study area. Yet, comparisons with published estimates suggest that there is significant potential for agroforestry to facilitate the commercialization of palm NTFPs for community based extractive activities. (C) 2016 Elsevier B.V. All rights reserved.
机译:乔木在热带森林REDD +框架内可以提供重要的非木材林产品(NTFP)来源。为了确定树状棕榈树的NTFP潜力,我们研究了巴西东部亚马逊地区可持续利用保护区内中尺度的丰度和分布模式。为了了解观察到的模式的环境相关性,我们评估了地形,水文和地理空间对成年乔木的存在,密度和生物量的影响。成年棕榈在25平方公里(2)网格内系统分布的30个(250 x 20 m)地块中采样。地形和水文变量来自遥感数字高程模型。使用Mantel检验和GLM检验了解释变量和响应变量中的空间相关性。为了测试弥散限制的证据,使用半变异函数检查GLM残差中的空间模式。在30个样地中,只有12个中有成年乔木。总共,我们记录了来自六个物种(Bactris maraja,Euterpe oleracea,Iriartella setigera,Oenocarpus bacaba,Oenocarpus bataua和Oenocarpus minor)的118个个体。这对应于每块土地0.85 Mg ha(-1)(范围:0-28.1 Mg ha(-1))的平均地上生活生物量。水文和地形变量表明,环境条件适用于经济上重要的物种大头菜。棕榈的存在,生物量和密度与样地之间的地理距离无关。水文模型显着解释了棕榈存在和生物量的变化,而密度仅由地形模型解释。我们的发现表明,树状棕榈树目前非常稀少,无法在研究区域有效地收获为NTFP。但是,与已公布的估计数进行比较表明,农林业在促进棕榈NTFP的商业化以进行基于社区的采伐活动方面具有巨大的潜力。 (C)2016 Elsevier B.V.保留所有权利。

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