Xu Yaoyang, Shao Meiling, Han Xinqin, Cai Qinghua
Water Air Soil Pollut. 2011 Jul;219(1-4):271-284. doi: 10.1007/s11270-010-0705-5. Epub 2010 Dec 4.
Limnologists have regarded temporal coherence (synchrony) as a powerful tool for identifying the relative importance of local-scale regulators and regional climatic drivers on lake ecosystems. Limnological studies on Asian reservoirs have emphasized that climate and hydrology under the influences of monsoon are dominant factors regulating seasonal patterns of lake trophic status; yet, little is known of synchrony or asynchrony of trophic status in the single reservoir ecosystem. Based on monthly monitoring data of chlorophyll a, transparency, nutrients, and nonvolatile suspended solids (NVSS) during 1-year period, the present study evaluated temporal coherence to test whether local-scale regulators disturb the seasonal dynamics of trophic state indices (TSI) in a giant dendritic reservoir, China (Three Gorges Reservoir, TGR). Reservoir-wide coherences for TSI(CHL), TSI(SD), and TSI(TP) showed dramatic variations over spatial scale, indicating temporal asynchrony of trophic status. Following the concept of TSI differences, algal productivity in the mainstream of TGR and Xiangxi Bay except the upstream of the bay were always limited by nonalgal turbidity (TSI(CHL)-TSI(SD) <0) rather than nitrogen and phosphorus (TSI(CHL)-TSI(TN) <0 and TSI(CHL)-TSI(TP) <0). The coherence analysis for TSI differences showed that local processes of Xiangxi Bay were the main responsible for local asynchrony of nonalgal turbidity limitation levels. Regression analysis further proved that local temporal asynchrony for TSI(SD) and nonalgal turbidity limitation levels were regulated by local dynamics of NVSS, rather than geographical distance. The implications of the present study are to emphasize that the results of trophic status obtained from a single environment (reservoir mainstream) cannot be extrapolated to other environments (tributary bay) in a way that would allow its use as a sentinel site.
湖沼学家将时间连贯性(同步性)视为一种强有力的工具,用于确定局部尺度调节因素和区域气候驱动因素对湖泊生态系统的相对重要性。对亚洲水库的湖沼学研究强调,季风影响下的气候和水文是调节湖泊营养状态季节模式的主导因素;然而,对于单一水库生态系统中营养状态的同步性或不同步性却知之甚少。基于某一年度叶绿素a、透明度、营养物质和非挥发性悬浮固体(NVSS)的月度监测数据,本研究评估了时间连贯性,以检验局部尺度调节因素是否扰乱了中国一个大型树枝状水库(三峡水库,TGR)中营养状态指数(TSI)的季节动态。TSI(CHL)、TSI(SD)和TSI(TP)的全水库连贯性在空间尺度上呈现出显著变化,表明营养状态存在时间上的不同步性。根据TSI差异的概念,三峡水库主流区以及香溪湾除湾上游以外区域的藻类生产力始终受到非藻类浊度的限制(TSI(CHL)-TSI(SD)<0),而非氮和磷(TSI(CHL)-TSI(TN)<0且TSI(CHL)-TSI(TP)<0)。TSI差异的连贯性分析表明,香溪湾的局部过程是造成非藻类浊度限制水平局部不同步性的主要原因。回归分析进一步证明,TSI(SD)的局部时间不同步性和非藻类浊度限制水平受NVSS局部动态的调节,而非地理距离。本研究的意义在于强调,从单一环境(水库主流区)获得的营养状态结果不能以可将其用作哨兵站点的方式外推至其他环境(支流湾)。