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玛莎葡萄园海岸观测站的聚球藻多样性:来自培养分离物、克隆文库和流式细胞术的见解

Diversity of Synechococcus at the Martha's Vineyard Coastal Observatory: Insights from Culture Isolations, Clone Libraries, and Flow Cytometry.

作者信息

Hunter-Cevera Kristen R, Post Anton F, Peacock Emily E, Sosik Heidi M

机构信息

Biology Department, Woods Hole Oceanographic Institution, Woods Hole, MA, USA.

Graduate School of Oceanography, University of Rhode Island, Narragansett, RI, 02882, USA.

出版信息

Microb Ecol. 2016 Feb;71(2):276-89. doi: 10.1007/s00248-015-0644-1. Epub 2015 Aug 2.

Abstract

The cyanobacterium Synechococcus is a ubiquitous, important phytoplankter across the world's oceans. A high degree of genetic diversity exists within the marine group, which likely contributes to its global success. Over 20 clades with different distribution patterns have been identified. However, we do not fully understand the environmental factors that control clade distributions. These factors are likely to change seasonally, especially in dynamic coastal systems. To investigate how coastal Synechococcus assemblages change temporally, we assessed the diversity of Synechococcus at the Martha's Vineyard Coastal Observatory (MVCO) over three annual cycles with culture-dependent and independent approaches. We further investigated the abundance of both phycoerythrin (PE)-containing and phycocyanin (PC)-only Synechococcus with a flow cytometric setup that distinguishes PC-only Synechococcus from picoeukaryotes. We found that the Synechococcus assemblage at MVCO is diverse (13 different clades identified), but dominated by clade I representatives. Many clades were only isolated during late summer and fall, suggesting more favorable conditions for isolation at this time. PC-only strains from four different clades were isolated, but these cells were only detected by flow cytometry in a few samples over the time series, suggesting they are rare at this site. Within clade I, we identified four distinct subclades. The relative abundances of each subclade varied over the seasonal cycle, and the high Synechococcus cell concentration at MVCO may be maintained by the diversity found within this clade. This study highlights the need to understand how temporal aspects of the environment affect Synechococcus community structure and cell abundance.

摘要

蓝藻聚球藻是一种广泛分布于全球海洋的重要浮游植物。该海洋群体内存在高度的遗传多样性,这可能是其在全球取得成功的原因。已识别出20多个具有不同分布模式的进化枝。然而,我们尚未完全了解控制进化枝分布的环境因素。这些因素可能会随季节变化,尤其是在动态的沿海系统中。为了研究沿海聚球藻组合如何随时间变化,我们采用依赖培养和不依赖培养的方法,在三个年度周期内评估了玛莎葡萄园岛海岸观测站(MVCO)的聚球藻多样性。我们还使用流式细胞仪装置进一步研究了仅含藻红蛋白(PE)和仅含藻蓝蛋白(PC)的聚球藻的丰度,该装置可将仅含PC的聚球藻与微微型真核生物区分开来。我们发现,MVCO的聚球藻组合具有多样性(识别出13个不同的进化枝),但以进化枝I的代表为主。许多进化枝仅在夏末和秋季被分离出来,这表明此时的分离条件更为有利。我们分离出了来自四个不同进化枝的仅含PC的菌株,但在整个时间序列中,这些细胞仅在少数样本中通过流式细胞仪检测到,这表明它们在该地点很罕见。在进化枝I内,我们识别出四个不同的亚进化枝。每个亚进化枝的相对丰度在季节性周期中有所变化,MVCO处聚球藻细胞的高浓度可能由该进化枝内发现的多样性维持。这项研究强调了了解环境的时间因素如何影响聚球藻群落结构和细胞丰度的必要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fbc4/4728178/76fab6932404/248_2015_644_Fig1_HTML.jpg

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