Centre for Ecology & Hydrology Lancaster, Lake Ecosystem Group, Library Avenue, Bailrigg, Lancashire LA1 4AP, UK.
Water Res. 2012 Apr 1;46(5):1364-71. doi: 10.1016/j.watres.2011.12.018. Epub 2011 Dec 14.
There is increasing evidence that recent changes in climate have had an effect on lake phytoplankton communities and it has been suggested that it is likely that Cyanobacteria will increase in relative abundance under the predicted future climate. However, testing such a qualitative prediction is challenging and usually requires some form of numerical computer model. Therefore, the lake modelling literature was reviewed for studies that examined the impact of climate change upon Cyanobacteria. These studies, taken collectively, generally show an increase in relative Cyanobacteria abundance with increasing water temperature, decreased flushing rate and increased nutrient loads. Furthermore, they suggest that whilst the direct effects of climate change on the lakes can change the timing of bloom events and Cyanobacteria abundance, the amount of phytoplankton biomass produced over a year is not enhanced directly by these changes. Also, warmer waters in the spring increased nutrient consumption by the phytoplankton community which in some lakes caused nitrogen limitation later in the year to the advantage of some nitrogen-fixing Cyanobacteria. Finally, it is also possible that an increase in Cyanobacteria dominance of the phytoplankton biomass will lead to poorer energy flow to higher trophic levels due to their relatively poor edibility for zooplankton.
越来越多的证据表明,最近的气候变化对湖泊浮游植物群落产生了影响,有人认为,在预测的未来气候条件下,蓝藻的相对丰度可能会增加。然而,验证这种定性预测具有挑战性,通常需要某种形式的数值计算机模型。因此,本文对研究气候变化对蓝藻影响的湖泊建模文献进行了回顾。这些研究综合表明,随着水温升高、冲洗率降低和营养负荷增加,相对蓝藻丰度增加。此外,这些研究表明,尽管气候变化对湖泊的直接影响可以改变藻类爆发事件和蓝藻丰度的时间,但一年内浮游植物生物量的产生并不会直接受到这些变化的促进。此外,春季水温升高会增加浮游植物群落对营养物质的消耗,在某些湖泊中,这会导致当年晚些时候氮素限制,有利于一些固氮蓝藻。最后,蓝藻对浮游植物生物量的优势增加也可能导致能量流向更高营养级的效率降低,因为它们对浮游动物的可食性相对较差。