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Diversity of picoeukaryotes at an oligotrophic site off the Northeastern Red Sea Coast

机译:东北红海沿岸贫营养化地点的微核生物的多样性

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Background Picoeukaryotes are protists?≤?3 μm composed of a wide diversity of taxonomic groups. They are an important constituent of the ocean’s microbiota and perform essential ecological roles in marine nutrient and carbon cycles. Despite their importance, the true extent of their diversity has only recently been uncovered by molecular surveys that resulted in the discovery of a substantial number of previously unknown groups. No study on picoeukaryote diversity has been conducted so far in the main Red Sea basin-a unique marine environment characterized by oligotrophic conditions, high levels of irradiance, high salinity and increased water temperature. Results We sampled surface waters off the coast of the northeastern Red Sea and analyzed the picoeukaryotic diversity using Sanger-based clone libraries of the 18S rRNA gene in order to produce high quality, nearly full-length sequences. The community captured by our approach was dominated by three main phyla, the alveolates, stramenopiles and chlorophytes; members of Radiolaria, Cercozoa and Haptophyta were also found, albeit in low abundances. Photosynthetic organisms were especially diverse and abundant in the sample, confirming the importance of picophytoplankton for primary production in the basin as well as indicating the existence of numerous ecological micro-niches for this trophic level in the upper euphotic zone. Heterotrophic organisms were mostly composed of the presumably parasitic Marine Alveolates (MALV) and the presumably bacterivorous Marine Stramenopiles (MAST) groups. A small number of sequences that did not cluster closely with known clades were also found, especially in the MALV-II group, some of which could potentially belong to novel clades. Conclusions This study provides the first snapshot of the picoeukaryotic diversity present in surface waters of the Red Sea, hence setting the stage for large-scale surveying and characterization of the eukaryotic diversity in the entire basin. Our results indicate that the picoeukaryotic community in the northern Red Sea, despite its unique physiochemical conditions (i.e. increased temperatures, increased salinity, and high UV irradiance) does not differ vastly from its counterparts in other oligotrophic marine habitats.
机译:背景真核生物是原生生物,≤3μm,由各种各样的生物分类群组成。它们是海洋微生物区系的重要组成部分,在海洋营养物和碳循环中起着至关重要的生态作用。尽管它们很重要,但是分子多样性的真正程度直到最近才被分子调查发现,从而导致发现了许多先前未知的群体。迄今为止,尚未在红海主盆地对皮生物类真核生物多样性进行过研究,该地区是一种独特的海洋环境,其特征是贫营养条件,高辐照度,高盐度和水温升高。结果我们对东北红海沿岸的地表水进行了采样,并使用基于Sanger的18S rRNA基因克隆文库分析了微核的多样性,以产生高质量,近乎全长的序列。我们的方法所捕获的群落主要由三个主要的门类组成,分别是肺泡类,层生石藻和绿藻类。尽管数量不多,但也发现了放射虫,鹿角虫和七足动物的成员。样品中的光合生物尤其多样且丰富,这证实了浮游植物对于该盆地初级生产的重要性,并表明在富营养区上部的营养水平上存在许多生态微生态位。异养生物主要由可能寄生的海洋肺泡(MALV)和可能具有细菌性的海洋藻类(MAST)组组成。还发现了少数与已知进化枝不紧密结合的序列,特别是在MALV-II组中,其中一些可能潜在地属于新进化枝。结论本研究提供了红海表层水域中微核真核生物多样性的第一个快照,从而为整个盆地的真核生物多样性的大规模调查和表征奠定了基础。我们的结果表明,尽管北部红海的微核生物群落具有独特的物理化学条件(即温度升高,盐度提高和紫外线辐射高),但与其他贫营养海洋生境的对应生物相差无几。

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