Wetland Biogeochemistry, Leibniz Center for Tropical Marine Ecology, Fahrenheitstrasse 6, 28359 Bremen, Germany.
J Fish Biol. 2010 Nov;77(8):1856-66. doi: 10.1111/j.1095-8649.2010.02750.x. Epub 2010 Sep 14.
The vulnerability of the pejerrey Odontesthes bonariensis population in Lake Chasicó was assessed under different climate change conditions. During the sampling period, the water temperature was adequate for fish reproduction and to sustain an adequate sex ratio. Climate-driven higher temperatures, however, may severely distort population structure and cause drastic reduction or local extinction of stocks. Lake Chasicó can be classified as eutrophic with clear waters and cyanobacteria that regularly cause fish mortality were identified as Nodularia spumigena and Oscillatoria sp. Global warming may strengthen the effects of eutrophication (e.g. toxic blooms or anoxia). Since many Cyanophyta species tolerate higher temperatures better than other algae, toxic blooms could increase. Furthermore, cyanobacteria have low nutritional value and could decouple the low-diversity food web. Lake Chasicó has currently the salinity optimum (c. 20) for the development of the early life-history stages of O. bonariensis. Climate change, however, is likely to amplify the intensity of droughts or inundations. Floods can endanger O. bonariensis development due to its sub-optimal growth at low salinity and droughts could increase lake salinity and also temperature and nutrient concentration. In order to reduce some of the effects of climate change on the O. bonariensis population in Lake Chasicó, integrated basin management based on an eco-hydrological approach is proposed.
评估了气候变化条件下查斯阔湖巴塔戈尼亚牙鲆种群的脆弱性。在采样期间,水温适合鱼类繁殖,并维持适当的性别比例。然而,气候驱动的较高温度可能会严重扭曲种群结构,并导致种群数量急剧减少或局部灭绝。查斯阔湖可归类为富营养化湖泊,水清澈,定期导致鱼类死亡的蓝藻被鉴定为节旋藻和颤藻。全球变暖可能会加剧富营养化的影响(例如,有毒水华或缺氧)。由于许多蓝藻物种比其他藻类更能耐受较高的温度,有毒水华可能会增加。此外,蓝藻的营养价值低,可能会使低多样性的食物网失去联系。查斯阔湖目前具有 O. bonariensis 早期生命史阶段发育的最佳盐度(约 20)。然而,气候变化可能会加剧干旱或洪水的强度。洪水可能会危及 O. bonariensis 的发育,因为它在低盐度下的生长不理想,而干旱可能会增加湖泊的盐度,以及温度和养分浓度。为了减少气候变化对查斯阔湖 O. bonariensis 种群的一些影响,建议采用基于生态水文学方法的综合流域管理。