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SSU rDNA Sequence Diversity and Seasonally Differentiated Distribution of Nanoplanktonic Ciliates in Neritic Bohai and Yellow Seas as Revealed by T-RFLP

机译:T-RFLP揭示的渤海和黄海神经浮游纤毛虫的SSU rDNA序列多样性和季节性差异分布

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摘要

Nanociliates have been frequently found to be important players in the marine microbial loop, however, little is known about their diversity and distribution in coastal ecosystems. We investigated the molecular diversity and distribution patterns of nanoplanktonic oligotrich and choreotrich (OC) ciliates in surface water of three neritic basins of northern China, the South Yellow Sea (SYS), North Yellow Sea (NYS), and Bohai Sea (BS) in June and November 2011. SSU rRNA gene clone libraries generated from three summertime samples (sites B38, B4 and H8) were analyzed and revealed a large novel ribotype diversity, of which many were low-abundant phylotypes belonging to the subclass Oligotrichia, but divergent from described morphospecies. Based on the data of terminal-restriction fragment length polymorphism (T-RFLP) analysis of all 35 samples, we found that the T-RF richness was generally higher in the SYS than in the BS, and negatively correlated with the molar ratio of P to Si. Overall, multidimensional scaling and permutational multivariate analysis of variance of the community turnover demonstrated a distinct seasonal pattern but no basin-to-basin differentiation across all samples. Nevertheless, significant community differences among basins were recognized in the winter dataset. Mantel tests showed that the environmental factors, P:Si ratio, water temperature and concentration of dissolved oxygen (DO), determined the community across all samples. However, both biogeographic distance and environment shaped the community in winter, with DO being the most important physicochemical factor. Our results indicate that the stoichiometric ratio of P:Si is a key factor, through which the phytoplankton community may be shaped, resulting in a cascade effect on the diversity and community composition of OC nanociliates in the N-rich, Si-limited coastal surface waters, and that the Yellow Sea Warm Current drives the nanociliate community, and possibly the microbial food webs, in the coastal ecosystem in winter.
机译:人们经常发现纳米纤毛虫是海洋微生物圈中的重要角色,但是,人们对其在沿海生态系统中的多样性和分布知之甚少。我们调查了中国北方三个浅水盆地,南黄海(SYS),北黄海(NYS)和渤海(BS)地表水中的纳米浮游性寡聚类和choreotrich(OC)纤毛虫的分子多样性和分布模式。 2011年6月和2011年11月。分析了从三个夏季样品(位点B38,B4和H8)生成的SSU rRNA基因克隆文库,并揭示了一个巨大的新型核糖型多样性,其中许多是属于Oligotrichia亚类的低丰度系统型,但与描述形态学。根据所有35个样品的末端限制性片段长度多态性(T-RFLP)分析数据,我们发现SYS中的T-RF丰富度通常高于BS,并且与P的摩尔比呈负相关来Si。总体而言,对社区营业额变化的多维标度和排列多元分析显示出明显的季节性模式,但在所有样本中都没有盆地到盆地的差异。尽管如此,冬季数据集中仍能识别出流域之间明显的社区差异。壁炉架测试表明,环境因素,P:Si比,水温和溶解氧(DO)浓度决定了所有样品中的群落。然而,冬季,生物地理距离和环境都影响着社区,溶解氧是最重要的理化因素。我们的研究结果表明,P:Si的化学计量比是决定浮游植物群落形状的关键因素,从而导致对富氮,Si受限的沿海表面OC纳米纤毛虫的多样性和群落组成的级联效应黄海暖流在冬季驱动了沿海生态系统中的纳米纤毛虫群落,甚至可能驱动了微生物食物网。

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