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Multi-year succession of cyanobacteria blooms in a highland reservoir with changing nutrient status, Guizhou Province, China

机译:贵州省高地水库中多年生蓝藻水华的养分状况变化

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Over the last 22 years significant phytoplankton changes in Hongfeng lake reservoir have been observed with multiple years of harmful cyanobacteria blooms (cHABs). Fish farming and other anthropogenic activities from 1994-2001 triggered the harmful blooms. Nine years after the cessation of aquaculture, a conversion from problematic species ( Microcystis spp, Aphanizomenon flos-aquae ) to the less problematic species P . limnetica and other associated non-cyanobacteria taxa was recorded. Through this period of change, trophic factors (bottom-up) were re-examined, and correlations between cHABs and selected environmental variables were observed. Higher temperatures, nutrients (TN, TP) and available light significantly favored the development of Microcystis spp blooms. With declining nutrient loads, and a decline in TP relative to TN there was a competitive shift from Microcystis summer blooms to the growth of Pseudanabaena limnetica and other non-cyanobacteria . Pseudanabaena limnetica was favored over Microcystis spp when temperatures were <20°C and TP was <0.03 mg L -1 . The apparent species succession to P. limnetica was enhanced by a competitive advantage under varied light conditions. Multiple environmental and biotic conditions (not always nutrients) were driving cHABs. Although only a selected number of environmental variables were examined, the CCA analysis supports observations that temperature and nutrients were associated with the species shift. The replacement of cHABs with the growth of less toxic cyanobacteria like P . limnetica , and other algae creates an interesting scenario (new community condition) for the removal of problematic taxa in reservoir systems. Diverting or controlling blooms will have direct implications on water quality and economic remediation initiatives in reservoir and lake management.
机译:在过去的22年中,观察到红枫湖水库的浮游植物发生了显着变化,并伴有多年的有害蓝藻水华(cHAB)。 1994-2001年的鱼类养殖和其他人为活动引发了有害的水华。在水产养殖停止九年后,从有问题的物种(微囊藻属,Aphanizomenon flos-aquae)转变为问题较少的物种P。记录了limnetica和其他相关的非蓝细菌类群。在这一变化期间,重新检查了营养因子(自下而上),并观察到了cHAB与所选环境变量之间的相关性。较高的温度,养分(TN,TP)和可用的光显着促进了微囊藻属水华的形成。随着养分含量的下降和相对于总氮的总磷的下降,从微囊藻的夏季开花向假单胞菌和其他非蓝细菌的生长发生了竞争性转变。当温度<20°C且TP <0.03 mg L -1时,Pseudanabaena limnetica优于Microcystis spp。在变化的光照条件下,竞争优势增强了对P. limnetica的表观物种演替。多种环境和生物条件(并非总是营养)驱动着cHAB。尽管仅检查了选定数量的环境变量,但CCA分析支持观察到温度和养分与物种迁移有关。用毒性较小的蓝细菌如P的生长替代cHAB。 limnetica和其他藻类为清除水库系统中有问题的类群创造了一个有趣的场景(新的社区条件)。转移或控制水华将直接影响水质和水库和湖泊管理中的经济补救措施。

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