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Unintended Consequences of Management Actions in Salt Pond Restoration: Cascading Effects in Trophic Interactions

机译:盐池恢复中管理措施的意外后果:营养相互作用中的级联效应

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摘要

Salt evaporation ponds have played an important role as habitat for migratory waterbirds across the world, however, efforts to restore and manage these habitats to maximize their conservation value has proven to be challenging. For example, salinity reduction has been a goal for restoring and managing former salt evaporation ponds to support waterbirds in the South Bay Salt Pond Restoration Project in San Francisco Bay, California, USA. Here, we describe a case study of unexpected consequences of a low-dissolved oxygen (DO) event on trophic interactions in a salt pond system following management actions to reduce salinity concentrations. We document the ramifications of an anoxic event in water quality including salinity, DO, and temperature, and in the response of the biota including prey fish biomass, numerical response by California Gulls (Larus californicus), and chick survival of Forster's Tern (Sterna forsteri). Management actions intended to protect receiving waters resulted in decreased DO concentrations that collapsed to zero for ≥ 4 consecutive days, resulting in an extensive fish kill. DO depletion likely resulted from an algal bloom that arose following transition of the pond system from high to low salinity as respiration and decomposition outpaced photosynthetic production. We measured a ≥ 6-fold increase in biomass of fish dropped on the levee by foraging avian predators compared with weeks prior to and following the low-DO event. California Gulls rapidly responded to the availability of aerobically-stressed and vulnerable fish and increased in abundance by two orders of magnitude. Mark-recapture analysis of 254 Forster's Tern chicks indicated that their survival declined substantially following the increase in gull abundance. Thus, management actions to reduce salinity concentrations resulted in cascading effects in trophic interactions that serves as a cautionary tale illustrating the importance of understanding the interaction of water quality and trophic structure when managing restoration of salt ponds.
机译:盐蒸发池在世界范围内作为迁徙水鸟的栖息地发挥了重要作用,然而,恢复和管理这些栖息地以最大程度地发挥其保护价值的努力已被证明具有挑战性。例如,在美国加利福尼亚州旧金山湾的南湾盐塘恢复项目中,降低盐碱度一直是恢复和管理以前的盐蒸发池以支持水禽的目标。在这里,我们描述了一个案例研究,该案例研究了采取降低盐分浓度的管理措施后,低溶解氧(DO)事件对盐池系统中营养相互作用的意外后果。我们记录了缺氧事件在水质中的分枝,包括盐度,溶解氧和温度,以及包括ta鱼生物量在内的生物群的响应,加利福尼亚海鸥(Larus californicus)的数值响应以及福斯特燕鸥(Sterna forsteri)的雏鸡存活率)。为了保护接收水而采取的管理措施导致溶解氧浓度降低,连续4天以上降至零,导致大量鱼类死亡。由于呼吸和分解超过光合作用,池塘系统从高盐度过渡到低盐度后出现藻华,这可能导致溶解氧的消耗。与低溶解氧事件发生前后的几周相比,我们测量了通过觅食鸟类掠食者而下降到堤岸上的鱼的生物量增加了≥6倍。加利福尼亚海鸥对需氧胁迫和脆弱鱼类的供应迅速做出反应,并且鱼类数量增加了两个数量级。对254只Forster's Tern小鸡的标记捕获分析表明,它们的存活率随着海鸥丰度的增加而大大降低。因此,降低盐分浓度的管理措施导致了营养相互作用的连锁效应,这是一个警示性的故事,说明了在管理盐池恢复过程中理解水质与营养结构相互作用的重要性。

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