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首页> 外文期刊>Hydrobiologia >Seasonal and interannual variability in the taxonomic composition and production dynamics of phytoplankton assemblages in Crater Lake, Oregon
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Seasonal and interannual variability in the taxonomic composition and production dynamics of phytoplankton assemblages in Crater Lake, Oregon

机译:俄勒冈州火山湖中的浮游植物分类分类组成和生产动态的季节性和年际变化

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摘要

Taxonomic composition and production dynamics of phytoplankton assemblages in Crater Lake, Oregon, were examined during time periods between 1984 and 2000. The objectives of the study were (1) to investigate spatial and temporal patterns in species composition, chlorophyll concentration, and primary productivity relative to seasonal patterns of water circulation; (2) to explore relationships between water column chemistry and the taxonomic composition of the phytoplankton; and (3) to determine effects of primary and secondary consumers on the phytoplankton assemblage. An analysis of 690 samples obtained on 50 sampling dates from 14 depths in the water column found a total of 163 phytoplankton taxa, 134 of which were identified to genus and 101 were identified to the species or variety level of classification. Dominant species by density or biovolume included Nitzschia gracilis, Stephanodiscus hantzschii, Ankistrodesmus spiralis, Mougeotia parvula, Dinobryon sertularia, Tribonema affine, Aphanocapsa delicatissima, Synechocystis sp., Gymnodinium inversum, and Peridinium inconspicuum. When the lake was thermally stratified in late summer, some of these species exhibited a stratified vertical distribution in the water column. A cluster analysis of these data also revealed a vertical stratification of the flora from the middle of the summer through the early fall. Multivariate test statistics indicated that there was a significant relationship between the species composition of the phytoplankton and a corresponding set of chemical variables measured for samples from the water column. In this case, concentrations of total phosphorus, ammonia, total Kjeldahl nitrogen, and alkalinity were associated with interannual changes in the flora; whereas pH and concentrations of dissolved oxygen, orthophosphate, nitrate, and silicon were more closely related to spatial variation and thermal stratification. The maximum chlorophyll concentration when the lake was thermally stratified in August and September was usually between depths of 100 m and 120 m. In comparison, the depth of maximum primary production ranged from 60 m to 80 m at this time of year. Regression analysis detected a weak negative relationship between chlorophyll concentration and Secchi disk depth, a measure of lake transparency. However, interannual changes in chlorophyll concentration and the species composition of the phytoplankton could not be explained by the removal of the septic field near Rim Village or by patterns of upwelling from the deep lake. An alternative trophic hypothesis proposes that the productivity of Crater Lake is controlled primarily by long-term patterns of climatic change that regulate the supply of allochthonous nutrients.
机译:研究了1984年至2000年之间俄勒冈州火山湖中浮游植物的分类组成和生产动态。研究的目的是(1)研究物种组成,叶绿素浓度和相对初级生产力的时空格局。水循环的季节性模式; (2)探讨水柱化学与浮游植物分类组成之间的关系; (3)确定主要和次要消费者对浮游植物组合的影响。在水柱14个深度的50个采样日期对690个样本进行的分析发现,总共有163个浮游植物类群,其中134个被确定为属,101个被确定为物种或分类级别。按密度或生物量计的主要物种包括细叶线虫(Nitzschia gracilis),汉氏单丝菌(Stephanodiscus hantzschii),螺线菌(Ankistrodesmus spiralis),细毛线虫(Mougeotia parvula),细齿恐龙(Dinobryon sertularia),Tribonema仿射,Aphanocapsa delicatissima,Synechocystis sp。当夏末对湖进行热分层时,其中一些物种在水柱中显示出分层的垂直分布。对这些数据的聚类分析还揭示了从夏季中期到初秋的垂直菌群分层。多变量测试统计数据表明,浮游植物的物种组成与从水柱中测得的一组相应的化学变量之间存在显着的关系。在这种情况下,总磷,氨,凯氏总氮和碱度的浓度与菌群的年际变化有关。 pH和溶解氧,正磷酸盐,硝酸盐和硅的浓度与空间变化和热分层关系更密切。在8月和9月对湖进行热分层时,最大叶绿素浓度通常在100 m至120 m的深度之间。相比之下,每年这个时候的最大一次开采深度范围为60 m至80 m。回归分析检测到叶绿素浓度与Secchi圆盘深度之间的弱负相关关系,Secchi圆盘深度是湖泊透明度的度量。然而,叶绿素浓度和浮游植物物种组成的年际变化无法通过去除环村附近的化粪场或深湖上涌的模式来解释。一种替代性的营养假说提出,火山口湖的生产力主要由调节异源养分供应的长期气候变化模式控制。

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