Conservation at the nexus of niches: Multidimensional niche modeling to improve management of Prairie Chub

IF 1.3 4区 农林科学 Q3 FISHERIES
Zachary D. Steffensmeier, S. Brewer, Maeghen Wedgeworth, T. Starks, Anthony W. Rodger, Erin Nguyen, J. Perkin
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引用次数: 1

Abstract

A central challenge in applied ecology is understanding how organisms are spatially and temporally distributed and how management might be tailored to maintain or restore species distributions. The niche concept is central to understanding species distributions, but the diversity of niche definitions requires that multiple dimensions be considered. For example, the Grinnellian niche concept focuses on environmental conditions that allow species to persist, the Eltonian niche concept stresses the influence of biotic interactions, and the fundamental niche concept considers both abiotic and biotic environmental features to define spaces that organisms could occupy.We combined abiotic (A), biotic (B), and movement (M) information (collectively, BAM model) to map the multidimensional niche of Prairie Chub Macrhybopsis australis, a regionally endemic freshwater fish currently under review for listing under the Endangered Species Act. We estimated A using remotely sensed environmental riverscape variables, B using the spatial distribution of a hybridization zone between Prairie Chub and Shoal Chub M. hyostoma, and M using data from a mark–recapture study.The BAM model estimated the spatial extent of multiple niches, including the Grinnellian (A; extent = 944 km of river), Eltonian (B; 2974 km), and fundamental niche (overlap of A + B; 645 km) niches. When A, B, and M components were combined, the estimated extent of the Prairie Chub niche was 645 km.Our work shows that the realized, multidimensional niche of Prairie Chub includes medium to large rivers with high habitat connectivity in the upper–middle Red River basin upstream of the distribution of Shoal Chub. The current Prairie Chub distribution could be maintained by preventing further habitat fragmentation and maintaining the environmental gradient separating Prairie Chub from Shoal Chub. Expansion of the species distribution may be possible through restoration of longitudinal fluvial connectivity.
生态位关系的保护:多维生态位建模以改善草原俱乐部的管理
应用生态学的一个核心挑战是了解生物如何在空间和时间上分布,以及如何调整管理以维持或恢复物种分布。生态位概念是理解物种分布的核心,但生态位定义的多样性需要考虑多个维度。例如,格林奈尔的生态位概念侧重于允许物种持续存在的环境条件,埃尔顿的生态位概念强调生物相互作用的影响,而基本的生态位概念考虑了非生物和生物环境特征来定义生物可以占据的空间。我们将非生物(A)、生物(B)和运动(M)信息(统称为BAM模型)结合起来,绘制了草原Chub Macrhybopsis australis的多维生态位图。草原Chub Macrhybopsis australis是一种区域性特有的淡水鱼,目前正在根据《濒危物种法案》进行上市审查。我们使用遥感环境河流景观变量来估计A, B使用草原Chub和浅滩Chub m.s hyostoma杂交带的空间分布,M使用标记重新捕获研究的数据。BAM模型估计了多个生态位的空间范围,包括Grinnellian (A;河段= 944 km), Eltonian (B;2974 km)和基本生态位(A + B重叠;645公里)的生态位。当A、B、M组分组合时,草原Chub生态位的估计范围为645 km。研究结果表明,草原鲤实现的多维生态位包括位于浅滩鲤分布上游的红河中上游的生境连通性较高的中大型河流。通过防止生境进一步破碎化和维持草原鲤与浅滩鲤之间的环境梯度,可以维持草原鲤的现有分布。通过恢复纵向河流连通性,可能扩大物种分布。
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来源期刊
CiteScore
2.60
自引率
18.20%
发文量
118
审稿时长
2 months
期刊介绍: The North American Journal of Fisheries Management promotes communication among fishery managers with an emphasis on North America, and addresses the maintenance, enhancement, and allocation of fisheries resources. It chronicles the development of practical monitoring and management programs for finfish and exploitable shellfish in marine and freshwater environments. Contributions relate to the management of fish populations, habitats, and users to protect and enhance fish and fishery resources for societal benefits. Case histories of successes, failures, and effects of fisheries programs help convey practical management experience to others.
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