MIT-WHOI Joint Program in Oceanography/Applied Ocean Science and Engineering, Woods Hole, MA, USA.
ISME J. 2012 Sep;6(9):1728-39. doi: 10.1038/ismej.2012.13. Epub 2012 Mar 8.
The activity of the N(2)-fixing cyanobacterial genus Trichodesmium is critical to the global nitrogen (N) and carbon (C) cycles. Although iron (Fe) has been shown to be an important element limiting the growth and N(2) fixation of Trichodesmium, there have been no specific data demonstrating the in situ affect of Fe on Trichodesmium. We surveyed Trichodesmium populations from the Atlantic and Pacific Oceans for Fe limitation using a novel quantitative reverse transcriptase-PCR (qRT-PCR) method monitoring the expression of an Fe limitation-induced gene, isiB. Here we report the first molecular evidence of in situ Fe limitation of Trichodesmium N(2) fixation, which was evident in samples from the Pacific Ocean, whereas limitation appeared minimal to nonexistent in Atlantic Ocean samples. As our method is Trichodesmium clade specific, we were also able to determine that representatives from the Trichodesmium tenue clade were the most biologically active group of Trichodesmium in the majority of our samples, which speaks to their dominance in open ocean regimes. Furthermore, comparisons of our field expression and chemical data with laboratory studies suggest that the majority of dissolved Fe in the open ocean is available to Trichodesmium colonies regardless of Fe complexation.
固氮蓝藻属(Trichodesmium)的活性对全球氮(N)和碳(C)循环至关重要。尽管铁(Fe)已被证明是限制 Trichodesmium 生长和固氮的重要元素,但尚无具体数据表明 Fe 对 Trichodesmium 的原位影响。我们使用一种新型的定量逆转录 PCR(qRT-PCR)方法,通过监测 Fe 限制诱导基因 isiB 的表达,对来自大西洋和太平洋的 Trichodesmium 种群进行了 Fe 限制调查。在这里,我们报告了首次原位限制 Trichodesmium 固氮的分子证据,这在太平洋样本中很明显,而在大西洋样本中限制似乎最小或不存在。由于我们的方法是 Trichodesmium 类群特异性的,我们还能够确定,在我们的大多数样本中,来自 Trichodesmium tenue 类群的代表是最具生物活性的 Trichodesmium 群体,这说明了它们在开阔海域的主导地位。此外,将我们的现场表达和化学数据与实验室研究进行比较表明,无论 Fe 络合如何,大多数溶解的 Fe 在开阔海域都可供 Trichodesmium 菌丛利用。