Relation between the habitat niche breadth and the geographic range size: A case study on palearctic voles (Mammalia: Rodentia: Arvicolinae)

Q4 Environmental Science
G. Shenbrot, B. Kryštufek
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引用次数: 0

Abstract

Habitat niche breadth for Palearctic Arvicolinae species was estimated at both local (α- niche) and global (the entire geographic range, γ-niche) scales using occurrence records of species and environmental (climate, topography, and vegetation) data. Niche breadth was estimated in the space of the first two principal components of environmental variables using kernel smoothing of the densities of species occurrence points. The breadth of α-niches was estimated for a set of random points inside the geographic range in a series of buffers of increasing size around these points. Within each buffer, we calculated the overlap between the distribution of environment values for the kernel smoothed densities of species occurrence points and the distribution of environment values in the background environment. The α-niche breadth was calculated as the slope of the linear regression of the niche breadth for buffers of different size by the ln area of these buffers with a zero intercept. The γ-niche breadth was calculated as the overlap between the distributions of environmental values for the kernel smoothed densities of species occurrence points over the whole geographic range and the distribution of environmental values in the background environment and also approximated by linear regression of the species’ average α-niche to the geographic range area of this species. The results demonstrated that the geographic range size was significantly related with the α- and γ-niche breadth. The γ-niche breadth was significantly positively correlated with the α-niche breadth. Finally, the differences between the γ-niche breadth values that were directly estimated and extrapolated from the α-niche breadth (Δ) values were positively correlated with the geographic range size. Thus, we conclude that the species occupy larger geographic ranges because they have broader niches. Our estimations of the γ-niche breadth increase with the geographic range size not due to a parallel increase of the environmental diversity (spatial autocorrelation in the environment).
栖息地生态位宽度与地理范围大小之间的关系:以北极田鼠为例
利用物种发生记录和环境(气候、地形和植被)数据,在本地(α-生态位)和全球(整个地理范围,γ-生态位。利用物种发生点密度的核平滑,在环境变量的前两个主要成分的空间中估计生态位宽度。对于地理范围内的一组随机点,在这些点周围的一系列大小不断增加的缓冲区中,估计了α-小生境的宽度。在每个缓冲区内,我们计算了物种出现点的内核平滑密度的环境值分布与背景环境中环境值分布之间的重叠。α-生态位宽度计算为不同大小缓冲区的生态位宽度的线性回归斜率,乘以这些缓冲区的ln面积,截距为零。γ-生态位宽度计算为整个地理范围内物种出现点的核平滑密度的环境值分布与背景环境中环境值分布之间的重叠,并通过物种平均α-生态位与该物种地理范围面积的线性回归进行近似。结果表明,地理范围大小与α-和γ-生态位宽度显著相关。γ生态位宽度与α生态位宽度呈正相关。最后,根据α-生态位宽度(Δ)值直接估计和推断的γ-生态位广度值之间的差异与地理范围大小呈正相关。因此,我们得出结论,这些物种占据了更大的地理范围,因为它们有更广阔的生态位。我们对γ-生态位宽度的估计随着地理范围的大小而增加,这不是由于环境多样性(环境中的空间自相关)的平行增加。
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来源期刊
Povolzhskii ekologicheskii zhurnal
Povolzhskii ekologicheskii zhurnal Agricultural and Biological Sciences-Ecology, Evolution, Behavior and Systematics
CiteScore
0.80
自引率
0.00%
发文量
15
审稿时长
9 weeks
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