College of Marine Life Science, Ocean University of China, Qingdao, 266003, China.
Environ Sci Pollut Res Int. 2015 May;22(10):7967-72. doi: 10.1007/s11356-015-4135-1. Epub 2015 Jan 30.
To determine an optimal species pool for periphytic microfauna colonization surveys, a multivariate approach was used to identify the influential species from a raw dataset of periphytic microfauna. Samples were collected at two depths of 1 and 3 m in coastal waters of the Yellow Sea using a glass slide method. From the full 77-species dataset, a 23-species subset with sufficient information of the whole community was identified. The small subset maintained sufficient information of colonization pattern of entire raw communities (correlation coefficient >0.95). The colonization curves based the small subset well fitted the MacArthur-Wilson and logistic model equations in both species composition and individual abundance, respectively. Compared to the functional parameters based on the full dataset, the colonization rates (G) were significantly high and the time reaching 90% equilibrium species number (T 90) significantly low (P < 0.05), while the growth rates (r) and the time reaching 50 % maximum abundance (T 50) showed no significant changes (P > 0.05) at both depths, respectively. The species richness, diversity, and evenness represented significantly closed linear relationships between the subset and the full dataset. The results suggest that the small subset might be used as a robust optimal species pool for colonization-based bioassessment surveys and allows developing a time-efficient protocol for marine monitoring programs using of periphytic microfauna.
为了确定适合后生动物定殖调查的最佳物种库,本研究采用多元分析方法,从后生动物定殖调查原始数据集识别有影响的物种。使用玻璃载玻片法在黄海近岸海域的 1 和 3 m 两个深度采集样本。在 77 种全物种数据集中,确定了一个具有足够社区整体信息的 23 种小物种子集。该小子集充分保留了原始社区整个定殖模式的信息(相关系数>0.95)。基于小子集的定殖曲线分别很好地拟合了 MacArthur-Wilson 和逻辑斯谛模型方程的物种组成和个体丰度。与基于全数据集的功能参数相比,在两个深度的定殖率(G)显著较高,达到 90%平衡物种数的时间(T90)显著较低(P<0.05),而增长率(r)和达到最大丰度 50%的时间(T50)没有明显变化(P>0.05)。物种丰富度、多样性和均匀度在子集和全数据集之间表现出显著的线性关系。结果表明,小子集可能被用作基于定殖的生物评估调查的稳健最佳物种库,并允许为海洋监测计划开发一种高效的时间协议,使用后生动物定殖。