首页> 外文期刊>Applied Microbiology >High-Level Abundances of Methanobacteriales and Syntrophobacterales May Help To Prevent Corrosion of Metal Sheet Piles
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High-Level Abundances of Methanobacteriales and Syntrophobacterales May Help To Prevent Corrosion of Metal Sheet Piles

机译:高含量的甲烷菌和滑膜细菌可能有助于防止金属板桩腐蚀

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Iron sheet piles are widely used in flood protection, dike construction, and river bank reinforcement. Their corrosion leads to gradual deterioration and often makes replacement necessary. Natural deposit layers on these sheet piles can prevent degradation and significantly increase their life span. However, little is known about the mechanisms of natural protective layer formation. Here, we studied the microbially diverse populations of corrosion-protective deposit layers on iron sheet piles at the Gouderak pumping station in Zuid-Holland, the Netherlands. Deposit layers, surrounding sediment and top sediment samples were analyzed for soil physicochemical parameters, microbially diverse populations, and metabolic potential. Methanogens appeared to be enriched 18-fold in the deposit layers. After sequencing, metagenome assembly and binning, we obtained four nearly complete draft genomes of microorganisms (Methanobacteriales, two Coriobacteriales, and Syntrophobacterales) that were highly enriched in the deposit layers, strongly indicating a potential role in corrosion protection. Coriobacteriales and Syntrophobacterales could be part of a microbial food web degrading organic matter to supply methanogenic substrates. Methane-producing Methanobacteriales could metabolize iron, which may initially lead to mild corrosion but potentially stimulates the formation of a carbonate-rich protective deposit layer in the long term. In addition, Methanobacteriales and Coriobacteriales have the potential to interact with metal surfaces via direct interspecies or extracellular electron transfer. In conclusion, our study provides valuable insights into microbial populations involved in iron corrosion protection and potentially enables the development of novel strategies for in situ screening of iron sheet piles in order to reduce risks and develop more sustainable replacement practices.IMPORTANCE Iron sheet piles are widely used to reinforce dikes and river banks. Damage due to iron corrosion poses a significant safety risk and has significant economic impact. Different groups of microorganisms are known to either stimulate or inhibit the corrosion process. Recently, natural corrosion-protective deposit layers were found on sheet piles. Analyses of the microbial composition indicated a potential role for methane-producing archaea. However, the full metabolic potential of the microbial communities within these protective layers has not been determined. The significance of this work lies in the reconstruction of the microbial food web of natural corrosion-protective layers isolated from noncorroding metal sheet piles. With this work, we provide insights into the microbiological mechanisms that potentially promote corrosion protection in freshwater ecosystems. Our findings could support the development of screening protocols to assess the integrity of iron sheet piles to decide whether replacement is required.
机译:铁板桩广泛用于防洪,堤防建设和河岸加固。它们的腐蚀导致逐渐变质,通常需要更换。这些板桩上的自然沉积层可以防止降解并显着延长其使用寿命。然而,关于天然保护层形成的机制知之甚少。在这里,我们研究了荷兰Zuid-Holland的Gouderak抽水站上铁皮桩上微生物腐蚀防护沉积层的多样性。分析了沉积层,周围沉积物和顶部沉积物样品的土壤理化参数,微生物多样性种群和代谢潜力。产甲烷的甲烷气似乎富集了18倍。经过测序,元基因组装配和装箱后,我们获得了四个几乎完整的微生物基因组草图(甲烷细菌,两个结肠细菌和滑膜细菌),它们在沉积层中高度富集,有力地表明了其在腐蚀防护中的潜在作用。结肠细菌和滑膜细菌可能是微生物食物网中降解有机物以提供产甲烷底物的一部分。产甲烷的甲烷细菌可以代谢铁,最初可能会导致轻度腐蚀,但从长远来看可能刺激形成富含碳酸盐的保护性沉积层。另外,甲烷细菌和结肠细菌具有通过直接种间或细胞外电子转移与金属表面相互作用的潜力。总之,我们的研究为涉及铁腐蚀防护的微生物种群提供了宝贵的见识,并有可能为铁板桩的现场筛查开发新的策略,以降低风险并发展更可持续的替代实践。用来加固堤防和河岸。铁腐蚀造成的损坏会带来重大的安全风险,并会产生重大的经济影响。已知不同种类的微生物可以刺激或抑制腐蚀过程。最近,在板桩上发现了天然的防腐蚀沉积层。微生物组成的分析表明了产甲烷古菌的潜在作用。但是,尚未确定这些保护层中微生物群落的全部代谢潜能。这项工作的意义在于重建天然食品防腐层的微生物食物网,该天然食品防腐层与不腐蚀的金属板桩隔离。通过这项工作,我们提供了对可能促进淡水生态系统腐蚀防护的微生物机制的见解。我们的发现可以支持筛选方案的发展,以评估铁皮桩的完整性,以决定是否需要更换。

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