Infrared Spectroscopic Detection of Biosignatures at Lake Tírez, Spain: Implications for Mars.

Progress of Theoretical Physics Pub Date : 2020-01-01 Epub Date: 2019-10-08 DOI:10.1089/ast.2019.2106
Louisa J Preston, Rebeca Barcenilla, Lewis R Dartnell, Ezgi Kucukkilic-Stephens, Karen Olsson-Francis
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Abstract

The detection of potential biosignatures with mineral matrices is part of a multifaceted approach in the search for life on other planetary bodies. The 2020 ExoMars Rosalind Franklin rover includes within its payload three IR spectrometers in the form of ISEM (Infrared Spectrometer for ExoMars), MicrOmega, and Ma-MISS (Mars Multispectral Imager for Subsurface Studies). The use of this technique in the detection and characterization of biosignatures is of great value. Organic materials are often co-deposited in terrestrial evaporites and as such have been proposed as relevant analogs in the search for life on Mars. This study focuses on Ca-sulfates collected from the hypersaline Tírez Lake in Spain. Mid infrared and visible near infrared analysis of soils, salt crusts, and crystals with green and red layering indicative of microbial colonization of the samples was acquired from across the lake and identified the main mineral to be gypsum with inputs of carbonate and silica. Organic functional groups that could be attributed to amides and carboxylic acids were identified as well as chlorophyll; however, due to the strong mineralogical absorptions observed, these were hard to unambiguously discern. Taxonomical assignment demonstrated that the archaeal community within the samples was dominated by the halophilic extremophile Halobacteriaceae while the bacterial community was dominated by the class Nocardiaceae. The results of this research highlight that sulfates on Mars are a mixed blessing, acting as an effective host for organic matter preservation but also a material that masks the presence of organic functional groups when analyzed with spectroscopic tools similar to those due to fly on the 2020 ExoMars rover. A suite of complementary analytical techniques therefore should be used to support the spectral identification of any candidate extraterrestrial biosignatures.

西班牙蒂雷兹湖生物特征的红外光谱探测:对火星的影响
探测矿物基质的潜在生物特征是在其他行星体上寻找生命的多方面方法的一部分。2020 年 ExoMars 罗莎琳德-富兰克林漫游车的有效载荷包括三个红外光谱仪,分别是 ISEM(ExoMars 红外光谱仪)、MicrOmega 和 Ma-MISS(火星地表下研究多光谱成像仪)。这项技术在探测和描述生物特征方面具有重要价值。陆地蒸发岩中通常会共同沉积有机物,因此被认为是寻找火星生命的相关类似物。本研究的重点是从西班牙超高盐度的 Tírez 湖中采集的钙硫酸盐。对整个湖泊的土壤、盐壳和晶体进行了中红外和可见近红外分析,分析结果表明,绿色和红色分层表明样本中存在微生物定殖,并确定主要矿物为石膏,同时还含有碳酸盐和二氧化硅。有机功能基团可归因于酰胺和羧酸以及叶绿素;然而,由于观察到强烈的矿物学吸收,很难明确辨别这些有机功能基团。分类学鉴定表明,样本中的古菌群落主要是嗜卤的极端嗜卤菌 Halobacteriaceae,而细菌群落主要是 Nocardiaceae 类。这项研究的结果突出表明,火星上的硫酸盐是一种喜忧参半的物质,既是保存有机物的有效载体,又是一种在使用类似于 2020 年 ExoMars 火星探测器上将使用的光谱工具进行分析时会掩盖有机功能基团存在的物质。因此,应使用一套补充分析技术来支持任何候选地外生物特征的光谱鉴定。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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Progress of Theoretical Physics
Progress of Theoretical Physics 物理-物理:综合
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