Department of Natural Sciences, Linnaeus University, Kalmar, Sweden.
ISME J. 2013 Jul;7(7):1413-23. doi: 10.1038/ismej.2013.26. Epub 2013 Feb 28.
The Baltic Sea receives large nitrogen inputs by diazotrophic (N2-fixing) heterocystous cyanobacteria but the significance of heterotrophic N2 fixation has not been studied. Here, the diversity, abundance and transcription of the nifH fragment of the nitrogenase enzyme in two basins of the Baltic Sea proper was examined. N2 fixation was measured at the surface (5 m) and in anoxic water (200 m). Vertical sampling profiles of >10 and <10 μm size fractions were collected in 2007, 2008 and 2011 at the Gotland Deep and in 2011 in the Bornholm Basin. Both of these stations are characterized by permanently anoxic bottom water. The 454-pyrosequencing nifH analysis revealed a diverse assemblage of nifH genes related to alpha-, beta- and gammaproteobacteria (nifH cluster I) and anaerobic bacteria (nifH cluster III) at and below the chemocline. Abundances of genes and transcripts of seven diazotrophic phylotypes were investigated using quantitative polymerase chain reaction revealing abundances of heterotrophic nifH phylotypes of up to 2.1 × 10(7) nifH copies l(-1). Abundant nifH transcripts (up to 3.2 × 10(4) transcripts l(-1)) within nifH cluster III and co-occurring N2 fixation (0.44±0.26 nmol l(-1) day(-1)) in deep water suggests that heterotrophic diazotrophs are fixing N2 in anoxic ammonium-rich waters. Our results reveal that N2 fixation in the Baltic Sea is not limited to illuminated N-deplete surface waters and suggest that N2 fixation could also be of importance in other suboxic regions of the world's oceans.
波罗的海通过固氮(固氮)异形胞蓝藻接收大量氮输入,但异养固氮的重要性尚未得到研究。在这里,检查了波罗的海两个盆地中氮酶 nifH 片段的多样性、丰度和转录。在表面(5 m)和缺氧水(200 m)中测量了 N2 固定。在 2007 年、2008 年和 2011 年,在哥特兰深海和 2011 年在博恩霍尔姆盆地中收集了 >10 和 <10 μm 大小分数的垂直采样剖面。这两个站点的特点是永久缺氧的底部水。454 焦磷酸测序 nifH 分析显示了与α-、β-和γ-变形菌(nifH 簇 I)和厌氧细菌(nifH 簇 III)相关的 nifH 基因的多样组合,在化变层以下。使用定量聚合酶链反应研究了七个固氮类群的基因和转录物的丰度,结果表明异养 nifH 类群的丰度高达 2.1 × 10(7) nifH 拷贝 l(-1)。在深部水中,nifH 簇 III 内大量的 nifH 转录物(高达 3.2 × 10(4)转录物 l(-1))和共存的 N2 固定(0.44±0.26 nmol l(-1) day(-1)) 表明,异养固氮生物正在缺氧富氨水中固定 N2。我们的结果表明,波罗的海的 N2 固定不仅限于光照不足的贫氮地表水,而且表明 N2 固定在世界海洋的其他亚氧化区也可能很重要。