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Lipid Biomarker and Carbon Stable Isotope Survey on the Dallol Hydrothermal System in Ethiopia

机译:埃塞俄比亚达洛尔热液系统的脂质生物标志物和碳稳定同位素调查

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摘要

The remote Dallol Hot Springs, an active hydrothermal system in the volcanic region of Danakil (Ethiopia), is an interesting yet poorly studied polyextreme environment for investigating the limits of life. Here, we explored the presence of signs of life in five samples of sinter deposits at Dallol, by means of lipid biomarkers and stable isotope composition. The results reveal the existence of biological material with predominance of (presently or recently active) microbial sources, according to the relative abundance of low-over-high molecular weight moieties ( alkanes, carboxylic acids, or alkanols), and the detection of diverse microbial-diagnostic compounds ( monomethyl alkanes; C ω7, C ω9, C ω10, C ω6,9 and C and C carboxylic acids; or short-chained dicarboxylic acids). The molecular lipid patterns at Dallol suggest a microbial community largely composed of thermophilic members of the Aquificae, Thermotogae, Chroroflexi, or Proteobacteria phyla, as well as microbial consortia of phototrophs ( Cyanobacteria-Chloroflexi) in lower-temperature and higher-pH niches. Autotrophic sources most likely using the Calvin cycle, together with the acetyl coenzyme A (CoA) pathway, were inferred from the depleted bulk δ C ratios (−25.9/−22.6‰), while sulfate-reducing bacteria were considered according to enriched sulfate (7.3/11.7‰) and total sulfur (20.5/8.2‰) δ S ratios. The abundance of functionalized hydrocarbons ( -carboxylic acids and -alkanols) and the distinct even-over-odd predominance/preference on the typically odd -alkanes (CPI ≤ 1) pointed to active or recent microbial metabolisms. This study documents the detection of biosignatures in the polyextreme environment of Dallol and raises the possibility of finding life or its remnants in other remote locations on Earth, where the harsh environmental conditions would lead to expect otherwise. These findings are relevant for understanding the limits of life and have implications for searching for hypothetical life vestiges in extreme environments beyond Earth.
机译:偏远的达洛温泉是位于达纳基尔(埃塞俄比亚)火山区的活跃热液系统,是一个有趣的,但研究不足的多元极端环境,用于研究生命极限。在这里,我们通过脂质生物标记物和稳定的同位素组成,探索了Dallol五个烧结矿样品中生命迹象的存在。结果表明,根据低-超高分子量部分(烷烃,羧酸或链烷醇)的相对丰度,以及各种微生物的检测,存在着以(目前或最近活跃的)微生物来源为主的生物材料。 -诊断化合物(单甲基烷烃; Cω7,Cω9,Cω10,Cω6,9和C和C羧酸;或短链二元羧酸)。 Dallol的分子脂质模式表明,微生物群落主要由Aquificae,Thermotogae,Chroroflexi或Proteobacteria phyla的嗜热成员组成,以及在较低温度和较高pH的生态位中的光养菌(Cyanobacteria-Chloroflexi)的微生物群落。从减少的总δC比值(−25.9 / −22.6‰)推断出最有可能使用加尔文循环的自养来源以及乙酰辅酶A(CoA)途径,而根据富含硫酸盐的方法考虑减少硫酸盐的细菌( 7.3 / 11.7‰)和总硫(20.5 / 8.2‰)δS比。官能化碳氢化合物(-羧酸和-链烷醇)的丰富性以及典型的奇数-链烷烃(CPI≤1)的独特的奇偶优势/偏好性表明微生物正在活跃或近期发生新陈代谢。这项研究记录了在Dallol的极端环境中生物特征的检测,并提高了在地球上其他偏远地区寻找生命或其残留物的可能性,否则恶劣的环境条件可能会导致人们期望不到这些。这些发现与理解生命的极限有关,并且对于在地球以外的极端环境中寻找假想的生命痕迹具有启示意义。

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