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首页> 外文期刊>International review of hydrobiology >Temporal Coherence of Chlorophyll a during a Spring Phytoplankton Bloom in Xiangxi Bay of Three-Gorges Reservoir, China
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Temporal Coherence of Chlorophyll a during a Spring Phytoplankton Bloom in Xiangxi Bay of Three-Gorges Reservoir, China

机译:三峡库区湘西湾春季浮游植物绽放过程中叶绿素a的时间相干性。

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Algal bloom phenomenon was defined as "the rapid growth of one or more phytoplankton species which leads to a rapid increase in the biomass of phytoplankton", yet most estimates of temporal coherence are based on yearly or monthly sampling frequencies and little is known of how synchrony varies among phytoplankton or of the causes of temporal coherence during spring algal bloom. In this study, data of chlorophyll a and related environmental parameters were weekly gathered at 15 sampling sites in Xiangxi Bay of Three-Gorges Reservoir (TGR, China) to evaluate patterns of temporal coherence for phytoplankton during spring bloom and test if spatial heterogeneity of nutrient and inorganic suspended particles within a single ecosystem influences synchrony of spring phytoplankton dynamics. There is a clear spatial and temporal variation in chlorophyll a across Xiangxi Bay. The degree of temporal coherence for chlorophyll a between pairs of sites located in Xiangxi Bay ranged from -0.367 to 0.952 with mean and median values of 0.349 and 0.321, respectively. Low levels of temporal coherence were often detected among the three stretches of the bay (Down reach, middle reach and upper reach), while high levels of temporal coherence were often found within the same reach of the bay. The relative difference of DIN between pair sites was the strong predictor of temporal coherence for chlorophyll a in down and middle reach of the bay, while the relative difference in Anorganic Suspended Solids was the important factor regulating temporal coherence in middle and upper reach. Contrary to many studies, these results illustrate that, in a small geographic area (a single reservoir bay of approximately 25 km), spatial heterogeneity influence synchrony of phytoplankton dynamics during spring bloom and local processes may override the effects of regional processes or dispersal.
机译:藻华现象被定义为“一种或多种浮游植物种类的快速生长,导致浮游植物生物量的快速增加”,但是时间连贯性的大多数估计是基于每年或每月的采样频率,而鲜为人知的是同步性如何。春季藻华期间浮游植物之间或时间连贯性的原因之间存在差异。在这项研究中,每周在三峡水库湘西湾(TGR,中国)的15个采样点收集叶绿素a和相关的环境参数数据,以评估春季开花期间浮游植物的时间连贯性模式,并测试养分的空间异质性单个生态系统中的无机悬浮颗粒影响春季浮游植物动力学的同步性。湘西湾的叶绿素a存在明显的时空变化。位于湘西湾的成对站点之间的叶绿素a的时间连贯程度在-0.367至0.952之间,平均值和中位数分别为0.349和0.321。在海湾的三个延伸段(下行,中游和上游)中经常检测到低水平的时间连贯性,而在海湾的同一范围内经常发现高水平的时间连贯性。配对位点之间DIN的相对差异是海湾下游和中游叶绿素a时间连贯性的有力预测指标,而无机悬浮物的相对差异是调节中游和上游连贯性的重要因素。与许多研究相反,这些结果表明,在一个较小的地理区域(一个约25 km的单个水库湾)中,空间异质性影响春季开花期间浮游植物动力学的同步性,而局部过程可能会覆盖区域过程或扩散的影响。

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