Cheung Shunyan, Suzuki Koji, Saito Hiroaki, Umezawa Yu, Xia Xiaomin, Liu Hongbin
Division of Life Science, The Hong Kong University of Science and Technology, Hong Kong, China.
Faculty of Environmental Earth Science, Hokkaido University, Sapporo, Japan.
PLoS One. 2017 Oct 23;12(10):e0186875. doi: 10.1371/journal.pone.0186875. eCollection 2017.
In this study, we used 454-pyrosequencing to report the highly diverse diazotroph communities in the Kuroshio and its adjacent waters along a transect across the Tokara Strait, Japan. Terrestrial input from the islands resulted in a highly heterogeneous diazotroph community within a relatively small geographic region, which was presumably caused by the remarkably different responses of UCYN-A2, UCYN-C and Trichodesmium to the steep environmental gradient. On the other hand, most major cyanobacterial OTUs found in this study were also detected in an unpublished dataset from the upstream Kuroshio, which suggests transportation of diazotrophs by the Kuroshio in large geographic scale. A significant amount of UCYN-C was found in the Kuroshio and offshore stations, suggesting the importance of this potentially overlooked group in the western North Pacific Ocean (WNPO). Moreover, a novel sublineage of UCYN-B was defined, which was predominant in an oligotrophic water sample; and it was also found to be widely distributed in oceanic waters. In addition, the apparent increase in relative abundance of UCYN-A2 from offshore to near-shore water provides evidence for the earlier and under-debating view that UCYN-A2 prefers coastal conditions. Our report provides new knowledge for understanding the phylogeny and ecology of unicellular cyanobacterial diazotrophs in WNPO.
在本研究中,我们利用454焦磷酸测序技术,报告了日本德之岛海峡沿线黑潮及其邻近海域中高度多样的固氮微生物群落。来自岛屿的陆地输入导致在相对较小的地理区域内形成了高度异质的固氮微生物群落,这可能是由于UCYN-A2、UCYN-C和束毛藻对陡峭环境梯度的显著不同反应所致。另一方面,本研究中发现的大多数主要蓝藻OTU也在黑潮上游一个未发表的数据集中被检测到,这表明黑潮在大地理尺度上对固氮微生物有输运作用。在黑潮和近海站点发现了大量的UCYN-C,这表明这个潜在被忽视的类群在北太平洋西部(WNPO)具有重要意义。此外,定义了UCYN-B的一个新亚谱系,它在贫营养水样中占主导地位;并且还发现它广泛分布于海洋水域。此外,UCYN-A2从近海到近岸水体相对丰度的明显增加,为UCYN-A2偏好沿海环境这一较早且存在争议的观点提供了证据。我们的报告为理解WNPO中单细胞蓝藻固氮微生物的系统发育和生态学提供了新知识。