[基于地形和遥感数据的物种分布建模,以图库林格拉山脉低山带(阿穆尔区泽雅国家自然保护区)维管植物为例]。

Pub Date : 2016-03-01
S V Dudov
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引用次数: 0

摘要

基于MaxEnt软件中嵌入的最大熵法,设计了图库林格拉山脉低山带63种维管植物空间分布的制图模型。建模的初始数据是物种发生的实际点、遥感数据(Landsat的多光谱空间快照)和数字地形模型。研究发现,影响模型的因子结构与物种生态幅值有关。狭窄物种的分布主要由地形决定,而地形又与生境的热湿条件有关。基于遥感形成的包括土壤-蔬菜覆被参数在内的变量对植物多样性模型的贡献较大。在对所得模型进行分析的过程中,揭示了具有相似分布格局的三个主要类群。第一组的物种在它们的分布上受到斜坡的限制。泽雅河和吉鲁伊河峡谷。第二种主要分布于山脉的南部大斜坡和大河河谷的南部斜坡。第三组包括那些分布在研究的整个领土上的物种。
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[Modeling of species distribution using topography and remote sensing data, with vascular plants of the Tukuringra Range low mountain belt (Zeya state Nature Reserve, Amur Region) as a case study].

On the basis of maximum entropy method embedded in MaxEnt software, the cartographic models are designed for spatial distribution of 63 species of vascular plants inhabiting low mountain belt of the Tukuringra Range. Initial data for modeling were actual points of a species occurrence, data on remote sensing (multispectral space snapshots by Landsat), and a digital topographic model. It is found out that the structure of factors contributing to the model is related to species ecological amplitude. The distribution of stenotopic species is determined, mainly, by the topography, which thermal and humidity conditions of habitats are associated with. To the models for eurytopic species, variables formed on the basis of remote sensing contribute significantly, those variables encompassing the parameters of the soil-vegetable cover. In course of the obtained models analyzing, three principal groups of species are revealed that have similar distribution pattern. Species of the first group are restricted in their distribution by the slopes of the. River Zeya and River Giluy gorges. Species of the second group are associated with the southern macroslope of the range and with southern slopes of large rivers' valleys. The third group incorporates those species that are distributed over the whole territory under study.

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