光-光分裂是决定海洋中纤毛虫(Alveolata, Ciliophora)分布的强大生态和进化力量

IF 2.1 4区 生物学 Q3 MICROBIOLOGY
Luciana F. Santoferrara, Aleena Qureshi, Amina Sher, Leocadio Blanco-Bercial
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引用次数: 0

摘要

关于海洋纤毛虫的大部分知识来自浅水和/或阳光照射的水域。我们利用DNA元条形码和基于系统发育的指标研究了远洋和中远洋水域纤毛虫的多样性和分布。本文分析了北大西洋马尾藻海百慕大大西洋时间序列研究地点3年来每月在12个深度(0-1000 m)采集的369个样本的18S rRNA基因(V4区)序列。综合深度和时间分辨率分析得出三个主要发现。首先,α -多样性(基于Faith的系统发育多样性指数)从地表到1000米水域逐渐但显著下降。其次,多元多样性分析(基于UniFrac距离)表明,从光水体到不光水体,纤毛虫组合发生了显著变化,从少毛到少膜膜的流行程度发生了转变。第三,序列变异的系统发育定位和支系水平相关性(EPA-ng和GAPPA算法)显示Oligotrichea、Litostomatea、Prostomatea和Phyllopharyngea与深度呈反相关,而oligohymehorea(尤其是Apostomatia)与深度呈直接相关。两种神秘的环境分支包括广泛分布于无光层的流行变体(oligohymehorea OLIGO5)或分布于有光和无光水域的亚分支(districhidae NASSO1)。这些结果解决了之前报道的纤毛虫α多样性与深度之间的矛盾关系,表明纤毛虫组合在从光向不光水域的功能变化(分别是寄生和混合寄生与杂食寄生的流行),并表明当代垂直剖面的分类群分布受到进化过程的强烈影响。将DNA序列与生物数据(显微镜、功能实验)相结合,并建立连接这些信息来源的数据库,仍然是更好地了解海洋中纤毛虫多样性、生态作用和进化的主要任务。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The photic-aphotic divide is a strong ecological and evolutionary force determining the distribution of ciliates (Alveolata, Ciliophora) in the ocean

The photic-aphotic divide is a strong ecological and evolutionary force determining the distribution of ciliates (Alveolata, Ciliophora) in the ocean

The bulk of knowledge on marine ciliates is from shallow and/or sunlit waters. We studied ciliate diversity and distribution across epi- and mesopelagic oceanic waters, using DNA metabarcoding and phylogeny-based metrics. We analyzed sequences of the 18S rRNA gene (V4 region) from 369 samples collected at 12 depths (0–1000 m) at the Bermuda Atlantic Time-series Study site of the Sargasso Sea (North Atlantic) monthly for 3 years. The comprehensive depth and temporal resolutions analyzed led to three main findings. First, there was a gradual but significant decrease in alpha-diversity (based on Faith's phylogenetic diversity index) from surface to 1000-m waters. Second, multivariate analyses of beta-diversity (based on UniFrac distances) indicate that ciliate assemblages change significantly from photic to aphotic waters, with a switch from Oligotrichea to Oligohymenophorea prevalence. Third, phylogenetic placement of sequence variants and clade-level correlations (EPA-ng and GAPPA algorithms) show Oligotrichea, Litostomatea, Prostomatea, and Phyllopharyngea as anti-correlated with depth, while Oligohymenophorea (especially Apostomatia) have a direct relationship with depth. Two enigmatic environmental clades include either prevalent variants widely distributed in aphotic layers (the Oligohymenophorea OLIGO5) or subclades differentially distributed in photic versus aphotic waters (the Discotrichidae NASSO1). These results settle contradictory relationships between ciliate alpha-diversity and depth reported before, suggest functional changes in ciliate assemblages from photic to aphotic waters (with the prevalence of algivory and mixotrophy vs. omnivory and parasitism, respectively), and indicate that contemporary taxon distributions in the vertical profile have been strongly influenced by evolutionary processes. Integration of DNA sequences with organismal data (microscopy, functional experiments) and development of databases that link these sources of information remain as major tasks to better understand ciliate diversity, ecological roles, and evolution in the ocean.

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来源期刊
CiteScore
4.30
自引率
4.50%
发文量
85
审稿时长
6-12 weeks
期刊介绍: The Journal of Eukaryotic Microbiology publishes original research on protists, including lower algae and fungi. Articles are published covering all aspects of these organisms, including their behavior, biochemistry, cell biology, chemotherapy, development, ecology, evolution, genetics, molecular biology, morphogenetics, parasitology, systematics, and ultrastructure.
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