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Distribution of Abundant and Active Planktonic Ciliates in Coastal and Slope Waters Off New England

机译:新英格兰沿海和斜坡水域丰富而活跃的浮游纤毛虫分布

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摘要

Despite their important role of linking microbial and classic marine food webs, data on biogeographical patterns of microbial eukaryotic grazers are limited, and even fewer studies have used molecular tools to assess active (i.e., those expressing genes) community members. Marine ciliate diversity is believed to be greatest at the chlorophyll maximum, where there is an abundance of autotrophic prey, and is often assumed to decline with depth. Here, we assess the abundant (DNA) and active (RNA) marine ciliate communities throughout the water column at two stations off the New England coast (Northwest Atlantic)—a coastal station 43 km from shore (40 m depth) and a slope station 135 km off shore (1,000 m). We analyze ciliate communities using a DNA fingerprinting technique, Denaturing Gradient Gel Electrophoresis (DGGE), which captures patterns of abundant community members. We compare estimates of ciliate communities from SSU-rDNA (abundant) and SSU-rRNA (active) and find complex patterns throughout the water column, including many active lineages below the photic zone. Our analyses reveal (1) a number of widely-distributed taxa that are both abundant and active; (2) considerable heterogeneity in patterns of presence/absence of taxa in offshore samples taken 50 m apart throughout the water column; and (3) three distinct ciliate assemblages based on position from shore and depth. Analysis of active (RNA) taxa uncovers biodiversity hidden to traditional DNA-based approaches (e.g., clone library, rDNA amplicon studies).
机译:尽管它们在链接微生物和经典海洋食物网方面发挥着重要作用,但是有关微生物真核放牧者的生物地理模式的数据仍然有限,而且很少有研究使用分子工具来评估活跃的(即那些表达基因的)社区成员。海洋纤毛虫的多样性被认为是最大的叶绿素最大值,那里有大量的自养猎物,通常被认为随着深度的增加而下降。在这里,我们评估了新英格兰海岸(西北大西洋)附近的两个站点(距海岸(40 m深度)43公里的沿海站点和斜坡站点)整个水柱中丰富的(DNA)和活动(RNA)海洋纤毛虫群落。离海岸135公里(1,000 m)。我们使用DNA指纹技术,变性梯度凝胶电泳(DGGE)分析纤毛虫群落,该技术捕获了丰富的群落成员的模式。我们比较了来自SSU-rDNA(丰富)和SSU-rRNA(活跃)的纤毛虫群落的估计,并发现了整个水柱的复杂模式,包括在光合带以下的许多活跃血统。我们的分析揭示了:(1)许多分布广泛的分类单元既丰富又活跃; (2)在整个水柱中相距50 m的近海样本中,分类单元的存在/不存在模式存在很大的异质性; (3)基于海岸和深度的位置的三个不同的纤毛组合。对活动(RNA)类群的分析揭示了传统基于DNA的方法(例如克隆文库,rDNA扩增子研究)所隐藏的生物多样性。

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