首页> 外文期刊>Astrobiology >Hexagonal Platelet-like Magnetite as a Biosignature of Thermophilic Iron-Reducing Bacteria and Its Applications to the Exploration of the Modern Deep, Hot Biosphere and the Emergence of Iron-Reducing Bacteria in Early Precambrian Oceans
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Hexagonal Platelet-like Magnetite as a Biosignature of Thermophilic Iron-Reducing Bacteria and Its Applications to the Exploration of the Modern Deep, Hot Biosphere and the Emergence of Iron-Reducing Bacteria in Early Precambrian Oceans

机译:六方血小板状磁铁矿作为嗜热铁还原细菌的生物特征及其在现代深热生物圈的探索和前寒武纪海洋中铁还原细菌的出现中的应用

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摘要

Dissimilatory iron-reducing bacteria are able to enzymatically reduce ferric iron and couple to the oxidation of organic carbon. This mechanism induces the mineralization of fine magnetite crystals characterized by a wide distribution in size and irregular morphologies that are indistinguishable from authigenic magnetite. Thermo-anaerobacter are thermophilic iron-reducing bacteria that predominantly inhabit terrestrial hot springs or deep crusts and have the capacity to transform amorphous ferric iron into magnetite with a size up to 120 nm. In this study, I first characterize the formation of hexagonal platelet-like magnetite of a few hundred nanometers in cultures of Thermoanaerobacter spp. strain TOR39. Biogenic magnetite with such large crystal sizes and unique morphology has never been observed in abiotic or biotic processes and thus can be considered as a potential biosignature for thermophilic iron-reducing bacteria. The unique crystallographic features and strong ferri-magnetic properties of these crystals allow easy and rapid screening for the previous presence of iron-reducing bacteria in deep terrestrial crustal samples that are unsuitable for biological detection methods and, also, the search for biogenic magnetite in banded iron formations that deposited only in the first 2 billion years of Earth with evidence of life.
机译:异化还原铁的细菌能够酶促还原三价铁,并与有机碳氧化。这种机制引起细的磁铁矿晶体的矿化,其特征是尺寸分布宽,形态不规则,与自生磁铁矿没有区别。热厌氧细菌是嗜热铁还原细菌,主要居住在陆地温泉或深地壳中,并具有将无定形三价铁转变为尺寸最大为120 nm的磁铁矿的能力。在这项研究中,我首先描述了嗜热厌氧杆菌属菌种中数百纳米的六角形片状磁铁矿的形成。菌株TOR39。具有如此大的晶体尺寸和独特形态的生物磁铁矿从未在非生物或生物过程中被观察到,因此可以被认为是嗜热铁还原细菌的潜在生物特征。这些晶体独特的晶体学特征和强大的亚铁磁性,可以轻松,快速地筛选出不适合生物检测方法的深层地壳样品中先前存在的还原铁细菌,此外,还不适合在带状中寻找生物磁铁矿仅在地球的前20亿年才沉积并具有生命证据的铁构造。

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