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铁在与地中海海草共生的单细胞固氮蓝藻的磷获取机制中的作用

The Role of Iron in the P-Acquisition Mechanisms of the Unicellular N-Fixing Cyanobacteria sp., Found in Association With the Mediterranean Seagrass .

作者信息

Fernández-Juárez Víctor, Bennasar-Figueras Antoni, Tovar-Sanchez Antonio, Agawin Nona Sheila R

机构信息

Marine Ecology and Systematics (MarEs), Department of Biology, Universitat de les Illes Balears (UIB), Palma, Spain.

Grup de Recerca en Microbiologia, Departament de Biologia, Universitat de les Illes Balears (UIB), Palma, Spain.

出版信息

Front Microbiol. 2019 Aug 22;10:1903. doi: 10.3389/fmicb.2019.01903. eCollection 2019.

Abstract

, an endemic seagrass of the Mediterranean Sea harbors a high diversity of N-fixing prokaryotes. One of these is sp., a unicellular N-fixing cyanobacteria detected through analysis from the epiphytes of . . The most related strain in culture is sp. PCC 7418 and this was used as the test organism in this study. In the Mediterranean Sea, phosphorus (P) and iron (Fe) can be the major limiting nutrients for N fixation. However, information about the mechanisms of P-acquisition and the role of metals (i.e., Fe) in these processes for N-fixing bacteria is scarce. From our genomic analyses of the test organism and other phylogenetically related N-fixing strains, sp. PCC 7418 is one of the strains with the greatest number of gene copies (eight copies) of alkaline phosphatases (APases). Our structural analysis of PhoD (alkaline phosphatase type D) and PhoU (phosphate acquisition regulator) of sp. PCC 7418 showed the connection among metals (Ca and Fe), and the P-acquisition mechanisms. Here, we measured the rates of alkaline phosphatase activity (APA) through MUF-P hydrolysis under different combinations of concentrations of inorganic P ( ) and Fe in experiments under N-fixing (low availability) and non-N fixing (high availability) conditions. Our results showed that APA rates were enhanced by the increase in Fe availability under low levels of , especially under N-fixing conditions. Moreover, the increased -uptake was reflected in the increased of the P-cellular content of the cells under N fixation conditions. We also found a positive significant relationship between cellular P and cellular Fe content of the cells ( = 0.71, < 0.05). Our results also indicated that Fe-uptake in sp. PCC 7418 was P and Fe-dependent. This study gives first insights of P-acquisition mechanisms in the N-fixing cyanobacteria ( sp.) found in . and highlights the role of Fe in these processes.

摘要

[地中海的一种本地海草中栖息着高度多样的固氮原核生物。其中之一是[某种生物],这是一种通过对[某种海草]附生植物进行分析检测到的单细胞固氮蓝细菌。培养物中亲缘关系最近的菌株是[某种菌株]PCC 7418,本研究将其用作测试生物。在地中海,磷(P)和铁(Fe)可能是固氮的主要限制养分。然而,关于固氮细菌获取磷的机制以及金属(即Fe)在这些过程中的作用的信息却很少。通过对测试生物和其他系统发育相关的固氮菌株进行基因组分析,[某种菌株]PCC 7418是碱性磷酸酶(APases)基因拷贝数最多(八个拷贝)的菌株之一。我们对[某种菌株]PCC 7418的PhoD(D型碱性磷酸酶)和PhoU(磷酸盐获取调节因子)进行的结构分析显示了金属(Ca和Fe)与磷获取机制之间的联系。在此,我们在固氮(低[氮]可用性)和非固氮(高[氮]可用性)条件下的实验中,通过MUF - P水解测量了在不同无机磷([磷])和铁浓度组合下的碱性磷酸酶活性(APA)速率。我们的结果表明,在低[磷]水平下,尤其是在固氮条件下,铁可用性的增加会提高APA速率。此外,在固氮条件下,[磷]摄取的增加反映在细胞的磷细胞含量增加上。我们还发现细胞磷与细胞铁含量之间存在显著正相关关系([相关系数]=0.71,[P值]<0.05)。我们的结果还表明,[某种菌株]PCC 7418中的铁摄取依赖于磷和铁。本研究首次揭示了在[某种海草]中发现的固氮蓝细菌([某种生物])的磷获取机制,并强调了铁在这些过程中的作用。] (注:原文部分化学式等未明确写出的内容用[某种物质]等表述,以便整体翻译)

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d6a9/6713934/e1daffdaf94a/fmicb-10-01903-g001.jpg

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