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From an irrigation system to an ecological asset: adding environmental flows establishes recovery of a threatened fish species

机译:从灌溉系统到生态资产:添加环境流量建立了威胁的鱼类的恢复

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Worldwide, riverine fish are the target of environmental water because populations have declined in lotic river habitats following river regulation. Murray cod is an endangered Australian riverine fish with remaining populations associated with lotic river reaches with instream habitat, including some creeks operated as part of irrigation systems. Our objectives were to develop a life history model, apply the building block method of environmental flows to enhance the abundance of juvenile Murray cod and promote population recovery. From 2008 to 2018 we evaluated changes to Murray cod juvenile abundance before and after implementation of a perennial environmental flow regime that began in 2013. During the first year of the environmental flow, larvae were collected as evidence of spawning. Murray cod abundance can be enhanced with environmental flows that target: (1) an annual spring spawning or recruitment flow with no rapid water level drops; (2) maximising hydrodynamic complexity (i.e. flowing habitats that are longitudinally continuous and hydrodynamically complex); and (3) an annual base winter connection flow. Recognition that incorporating hydraulics (water level and velocity) at fine and coarse time scales, over spatial scales that reflect life histories, provides broader opportunities to expand the scope of environmental flows to help restore imperilled fish species in regulated ecosystems.
机译:在全球范围内,河流鱼是环境水的目标,因为河流监管后的豪华河流栖息地下降。默里鳕鱼是一个濒临灭绝的澳大利亚河流,其余的人口与众多河流与仪器栖息地联系起来,包括一些作为灌溉系统的一部分运营的小溪。我们的目标是开发寿命历史模型,应用环境流量的建筑块方法,以增强少年默里鳕鱼的丰富,促进人口恢复。从2008年到2018年,我们在实施2013年开始的多年生环境流动制度之前和之后评估了默里鳕鱼少年丰富的变化。在环境流量的第一年,幼虫被收集为产卵证据。默里COD丰富可以增强目标:(1)每年春季产卵或招聘流程,没有快速的水位下降; (2)最大化水动力复杂度(即纵向连续和流体动力学复杂的流动栖息地); (3)年度基础冬季连接流。识别:在反映寿命历史的空间尺度上,在良好和粗糙的时间尺度上结合液压(水位和速度),提供更广泛的机会,扩大环境流量,以帮助恢复受管制的生态系统中的危险鱼类。

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