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Microbiological Investigation of two Chondrite Meteorites: Murchison and Polonnaruwa

机译:两种Chondrite Meteorites的微生物调查:Murchison和Polonnaruwa

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The question of the contamination of meteorites by modern environmental microorganisms is an issue that has been raised since evidence for biological remains in carbonaceous meteorites was first published in the early 1960's. The contamination hypothesis has been raised for recent fossils of diatoms and filamentous cyanobacteria found embedded in the stones even though the nitrogen content of the fossils was below the 0.5% detection limit for Energy Dispersive X-ray Spectroscopy (EDS) of the Field Emission Scanning Electron Microscope. All modern biological contaminants should have nitrogen content in the detectable range of 2% to 20% indicating the remains are ancient fossils rather than living or Holocene cells. In our work, the possibility that extremophilic bacteria from our lab collection might be able to metabolize organic matter in the studied meteorites was tested. The potential toxic or inhibitory growth effects were also checked for different anaerobic cultures. UV exposed meteorite samples with consequent sterile extraction of the internal part were subjected to anaerobic cultivation techniques. As a result, eight anaerobic strains were isolated from internal and exterior parts of the studied meteorites. Preliminary results of their morphology, cytology, physiology, and molecular (16SrRNA sequencing) studies are presented and discussed in this article.
机译:现代环境微生物污染陨石的问题是已经提出的问题,因为在1960年代早期发表了生物遗迹的证据。对于最近发现嵌入在石头中的硅藻和丝状细胞的氨基丝和丝状细胞的污染假设,即使化石的氮含量低于现场发射扫描电子的能量分散X射线光谱(EDS)的0.5%检测极限显微镜。所有现代生物污染物应在2%至20%的可检测范围内具有氮含量,表明仍然是古代化石而不是生活或全新世。在我们的工作中,我们实验室收集中的极端细菌可能能够在研究中测试有机物中的可能性。还检查了不同的厌氧培养物的潜在有毒或抑制性生长效应。 uV暴露的菱形样品具有随之而来的内部部分的无菌萃取的样品进行了厌氧培养技术。结果,从研究的陨石的内部和外部部分分离出八种厌氧菌株。本文提出和讨论了它们的形态,细胞学,生理学和分子(16SRRNA测序)研究的初步结果。

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