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分隔的喀斯特生态区域中鱼类栖息地关联的环境依赖性

The context dependency of fish-habitat associations in separated karst ecoregions.

作者信息

Swedberg Dusty A, Mollenhauer Robert, Brewer Shannon K

机构信息

Oklahoma Cooperative Fish and Wildlife Research Unit Oklahoma State University Stillwater Oklahoma USA.

Present address: Prairie Research Institute, Illinois Natural History Survey Champaign Illinois USA.

出版信息

Ecol Evol. 2023 Dec 18;13(12):e10701. doi: 10.1002/ece3.10701. eCollection 2023 Dec.

Abstract

Fish populations may be isolated via natural conditions in geographically separated ecoregions. Although reconnecting these populations is not a management goal, we need to understand how these populations persist across landscapes to develop meaningful conservation actions, particularly for species occupying sensitive karst ecosystems. Our study objective was to determine the physicochemical factors related to the occurrence of four spring-associated fishes. Arbuckle Uplift and Ozark Highlands ecoregions, USA. We used a hierarchical approach to identify habitat relationships at multiple spatial scales. We collected detection data using snorkeling and seining. We examined the physicochemical relationships related to the detection and occurrence of four spring-associated fishes using occupancy modeling in a Bayesian framework. We found physicochemical relationships that differed and were similar between ecoregions for several fishes. For three species, we found different water temperature relationships between ecoregions. Smallmouth bass were ubiquitous in their use of drainage areas in the Ozark Highlands but only associated with the lower network of the Arbuckle Uplift. There were several mirrored relationships between ecoregions, including an interaction between residual pool depth and water temperature, where sites with deeper pools were more likely to be occupied during warmer water temperatures. There were single-species occurrence relationships with percent vegetation and percent agriculture. Lastly, snorkeling was a more efficient sampling method compared to seining for all fishes. Our results indicate stream temperature mitigation may be possible via the maintenance of key channel morphologies, and we identify shared stressors between ecoregions. Channel mitigation to maintain reaches with deeper pools may be an important strategy for maintaining thermal refugia, particularly when considering climate change. Identifying the mechanistic underpinning of other multiscale ecological relationships would be helpful to discern if some of the different ecoregion relationships represent warning signals or interactions with unmeasured biotic or abiotic factors.

摘要

鱼类种群可能会因地理上分隔的生态区域中的自然条件而被隔离。虽然重新连接这些种群并非管理目标,但我们需要了解这些种群如何在不同景观中持续存在,以便制定有意义的保护行动,特别是对于占据敏感喀斯特生态系统的物种。我们的研究目标是确定与四种与泉水相关的鱼类出现有关的物理化学因素。研究地点为美国的阿尔巴克尔隆起和奥扎克高地生态区域。我们采用分层方法来识别多个空间尺度上的栖息地关系。我们通过浮潜和围网捕捞收集检测数据。我们在贝叶斯框架下使用占用模型检查了与四种与泉水相关的鱼类的检测和出现有关的物理化学关系。我们发现,几个鱼类在不同生态区域之间存在不同但也有相似的物理化学关系。对于三种鱼类,我们发现不同生态区域之间的水温关系有所不同。小口黑鲈在奥扎克高地广泛分布于排水区域,但仅与阿尔巴克尔隆起的下游水系有关。不同生态区域之间存在几种镜像关系,包括残余池深度和水温之间的相互作用,即水温较高时,池较深的地点更有可能有鱼栖息。存在与植被百分比和农业用地百分比的单物种出现关系。最后,与围网捕捞相比,浮潜是对所有鱼类更有效的采样方法。我们的结果表明,通过维持关键的河道形态可能实现溪流温度的缓解,并且我们识别出了不同生态区域之间的共同压力源。维持有较深水池的河段的河道缓解措施可能是维持热避难所的重要策略,特别是在考虑气候变化时。确定其他多尺度生态关系的机制基础,将有助于识别一些不同生态区域关系是代表警告信号还是与未测量的生物或非生物因素的相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fd20/10726265/48a22a549abe/ECE3-13-e10701-g003.jpg

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