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Small eukaryotic phytoplankton communities in tropical waters off Brazil are dominated by symbioses between Haptophyta and nitrogen-fixing cyanobacteria

机译:巴西海外热带水域中的小型真核浮游植物群落主要由七足植物和固氮蓝细菌之间的共生体控制。

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摘要

Symbioses between eukaryotic algae and nitrogen-fixing cyanobacteria have been recognized in recent years as a key source of new nitrogen in the oceans. We investigated the composition of the small photosynthetic eukaryote communities associated with nitrogen-fixing cyanobacteria in the Brazilian South Atlantic Bight using a combination of flow cytometry sorting and high throughput sequencing of two genes: the V4 region of 18S rRNA and nifH. Two distinct eukaryotic communities were often encountered, one dominated by the Mamiellophyceae Bathycoccus and Ostreococcus, and one dominated by a prymnesiophyte known to live in symbiosis with the UCYN-A1 nitrogen-fixing cyanobacterium. Among nifH sequences, those from UCYN-A1 were most abundant but three other UCYN-A clades (A2, A3, A4) were also found. Network analysis confirmed the relation between A1 and A2 clades and their hypothesized hosts and pointed out to the potential association between novel clade A4 with Braarudosphaera bigelowii, previously hypothesized to host A2.
机译:近年来,真核藻类和固氮蓝细菌之间的共生酶被认为是海洋中新氮的主要来源。我们使用流式细胞术分选和两个基因的高通量测序相结合,研究了与巴西南大西洋沿海地区固氮蓝细菌相关的小型光合作用真核生物群落的组成:18S rRNA的V4区和nifH。经常会遇到两个不同的真核生物群落,一个由Mamiellophyceae的Bythycoccus和Ostreococcus占主导,另一个由已知与UCYN-A1固氮蓝藻共生的扁桃体(Prymnesiophyte)占主导。在nifH序列中,来自UCYN-A1的序列最多,但是还发现了其他三个UCYN-A进化枝(A2,A3,A4)。网络分析证实了A1和A2进化枝与它们的假想宿主之间的关系,并指出了新型进化枝A4与先前被假定为宿主A2的Braarudosphaera bigelowii之间的潜在联系。

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