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河流海豚对流量的生境响应:利用生态完整性来管理河流流量。

In-stream habitat availability for river dolphins in response to flow: Use of ecological integrity to manage river flows.

机构信息

School of Natural Resources and the Environment, University of Arizona, Tucson, Arizona, United States of America.

Tribhuvan University, Institute of Forestry, Pokhara, Nepal.

出版信息

PLoS One. 2021 Jul 21;16(7):e0241099. doi: 10.1371/journal.pone.0241099. eCollection 2021.

Abstract

Population decline and extinction risk of river dolphins are primarily associated with flow alteration. Previous studies predominantly highlighted maintenance of adequate flow for low water seasons when habitats contract and the risk of local extinction escalates. Although river dolphins are sensitive to reduction in river flow, no studies quantify the relationships between flow and ecology of river dolphins to mitigate the potential adverse impacts of flow alteration. We quantify the relationships between flow and the ecology of river cetaceans concerning Ganges River dolphins (GRD; Platanista gangetica gangetica) usable area availability (AWS) for the low water season at wider flows (50-575 m3/s) at finer spatial and temporal scales. This study reveals that distribution of area usable to GRD is highly regulated by the adequate flow and river attributes (velocity and depth) interactions that likely offer energetically efficient modes of locomotion to GRD, suggesting the hydro-physical environment as a major determinant of river dolphin distribution and abundance. Flow and AWS relationships indicate that the flow during the dry season negatively contributed to AWS, whereas that of pre-monsoon maximized the AWS, suggesting that modifying flow regimes does alter in-stream habitats at varying spatial scales and may influence life-history strategies. Substantial fragmentation in suitable pool availability and loss of longitudinal connectivity exhibited by dry season flow suggested a higher risk of adverse biological effects during the dry season, which may reduce population viability by reducing survivorship and reproduction failure. Owing to river dolphins' dependence on the attribute of freshwater flow, they can be expected to be more affected by flow regulations as interactive effects. Considering the seasonal effects and changes in the availability of usable areas by flow alteration, adopting effective habitat retention plans by water-based development projects appears critical to avoid further ecological risks in aquatic species conservation. Identifying priority riverscapes for river cetaceans and prioritizing investment opportunities is an essential first step towards effective riverine cetacean conservation.

摘要

人口减少和江豚灭绝的风险主要与水流变化有关。以前的研究主要强调了在栖息地收缩和局部灭绝风险增加的枯水季节保持足够的水流。尽管江豚对河流流量减少很敏感,但没有研究量化流量与江豚生态学之间的关系,以减轻水流变化的潜在不利影响。我们量化了流量与恒河江豚(Platanista gangetica gangetica)可利用面积(AWS)在更宽的流量(50-575m3/s)下的低水季节的生态关系,在更精细的时空尺度上。这项研究表明,江豚可利用区域的分布受到足够的水流和河流属性(流速和深度)相互作用的高度调节,这可能为江豚提供了能量效率高的运动模式,表明水物理环境是江豚分布和丰度的主要决定因素。流量和 AWS 之间的关系表明,枯水季节的流量对 AWS 产生负面影响,而前季风期的流量则最大限度地增加了 AWS,这表明改变流量模式会在不同的空间尺度上改变河流栖息地,并可能影响生命史策略。枯水季节流量表现出适宜池可用性的大量碎片化和纵向连通性的丧失,表明在枯水季节可能会产生更高的不利生物影响风险,这可能会通过降低存活率和繁殖失败来降低种群活力。由于江豚依赖于淡水流量的属性,它们可能会受到水流调节的更严重影响。考虑到季节性影响和流量变化对可用区域的影响,通过基于水的开发项目采取有效的栖息地保留计划对于避免水生物种保护中的进一步生态风险至关重要。确定江豚的优先河流景观并优先考虑投资机会是实现有效江豚保护的第一步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3a22/8294540/319bef7fa25f/pone.0241099.g001.jpg

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