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Journal ArticleDOI

Niche breadth predicts geographical range size: a general ecological pattern.

Rachel A. Slatyer, +2 more
- 01 Aug 2013 - 
- Vol. 16, Iss: 8, pp 1104-1114
TLDR
Despite significant variability in the strength of the relationship among studies, the general positive relationship suggests that specialist species might be disproportionately vulnerable to habitat loss and climate change due to synergistic effects of a narrow niche and small range size.
Abstract
The range of resources that a species uses (i.e. its niche breadth) might determine the geographical area it can occupy, but consensus on whether a niche breadth–range size relationship generally exists among species has been slow to emerge. The validity of this hypothesis is a key question in ecology in that it proposes a mechanism for commonness and rarity, and if true, may help predict species' vulnerability to extinction. We identified 64 studies that measured niche breadth and range size, and we used a meta-analytic approach to test for the presence of a niche breadth–range size relationship. We found a significant positive relationship between range size and environmental tolerance breadth (z = 0.49), habitat breadth (z = 0.45), and diet breadth (z = 0.28). The overall positive effect persisted even when incorporating sampling effects. Despite significant variability in the strength of the relationship among studies, the general positive relationship suggests that specialist species might be disproportionately vulnerable to habitat loss and climate change due to synergistic effects of a narrow niche and small range size. An understanding of the ecological and evolutionary mechanisms that drive and cause deviations from this niche breadth–range size pattern is an important future research goal.

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Citations
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Are fundamental niches larger than the realized? Testing a 50-year-old prediction by Hutchinson.

TL;DR: A novel quantitative test is presented using one-dimensional estimates of NF for 105 species of reptiles and amphibians, and estimates of NR obtained from ~1.4 x 104 field observations to support the hypothesis that NF ‘is larger’ than NR.
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Biotic Interactions Shape the Ecological Distributions of Staphylococcus Species.

TL;DR: An integrated approach demonstrates that fungi can structure the ecological distributions of closely related bacterial species, and the data highlight the importance of bacterium-fungus interactions in attempts to design and manipulate microbiomes.
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Invasions and extinctions through the looking glass of evolutionary ecology

TL;DR: Comparative studies of invasions and extinctions that apply an eco-evolutionary perspective could provide new insights into the environmental and genetic basis of ecological success in novel environments and improve efforts to preserve global biodiversity.
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The evolution of environmental tolerance and range size: a comparison of geographically restricted and widespread Mimulus.

TL;DR: Five pairs of western North American monkeyflowers were used to experimentally test the niche breadth hypothesis and predicted that species with broader thermal tolerances had larger geographic ranges and had more within‐population genetic variation in thermal reaction norms and experienced greater thermal variation across their geographic ranges than species with narrow thermal tolerance.
Journal ArticleDOI

Niche breadth: Causes and consequences for ecology, evolution, and conservation

TL;DR: The concept of "niche breadth" as discussed by the authors is a unifying concept spanning diverse aspects of ecology, evolution, and conservation biology, and it usually refers to the diversity of resources used or environments.
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