Spatial and temporal co-structure analyses between ichthyofauna and environment: an example in the tropics

Laurence Blanc, Catherine Aliaume, Alfonso Zerbi, Gérard Lasserre
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引用次数: 14

Abstract

Ichthyofauna distribution and habitat characteristics of Thalassia beds in the Grand Cul-de-Sac marin lagoon in Guadeloupe were studied during a one-year survey. Environmental variables (9) were measured monthly in ten sites along with collection of fish communities. The environmental data set, analysed alone through between–within group ‘principal component analysis’ (PCA), exhibited a significant spatial and temporal variability. The fish data set, however, presented only a significant spatial structure, stable over the year. Given the lack of temporal variability in fish distribution, a ‘between-site co-structure analysis’ (BSCA) was used to compare the faunistic and environmental structures in space. The co-inertia structure was reduced to one axis representing a strong coast-reef gradient, the major common phenomena to both data sets. Environment and fish distribution allowed to distinguish sites directly under mangrove influence (characterised by high seagrasses, high concentration of chlorophyll a and high densities of zooplankton), to sites under reef influence (with short but dense seagrasses, clear water, and poor nutriments). For that purposes, the BSCA summarised efficiently what in common the fauna spatial structure and the environment spatial structure may present.

鱼类与环境的时空共结构分析:以热带地区为例
在为期一年的调查中,研究了瓜德罗普岛大死湖(Grand Cul-de-Sac)海水泻湖海藻床的鱼类区系分布和生境特征。环境变量(9)每月在10个地点进行测量,同时收集鱼类群落。通过组间-组内“主成分分析”(PCA)对环境数据集进行单独分析,显示出显著的时空变异性。然而,鱼类数据集只呈现出一个显著的空间结构,在一年中保持稳定。考虑到鱼类分布缺乏时间变异性,我们使用了“站点间共结构分析”(BSCA)来比较空间上的动物和环境结构。共惯性结构被简化为一个轴,表示强烈的海岸-珊瑚礁梯度,这是两个数据集的主要共同现象。环境和鱼类分布使我们能够区分直接受红树林影响的地点(特点是海草多、叶绿素a浓度高、浮游动物密度高)和受珊瑚礁影响的地点(海草短但密集、海水清澈、营养不良)。为此,BSCA有效地总结了动物群空间结构和环境空间结构可能存在的共同点。
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