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短期微生物岩复苏作为对危机具有生态弹性的指示(阿根廷普纳的卡特马卡省)。

Short-term microbialite resurgence as indicator of ecological resilience against crises (Catamarca, Argentine Puna).

机构信息

Laboratorio de Investigaciones Microbiológicas en Lagunas Andinas (LIMLA), Planta Piloto de Procesos Industriales Microbiológicos (PROIMI), CONICET, Av. Belgrano y Psje. Caseros S/N, San Miguel de Tucumán, Tucumán, Argentina.

Instituto Superior de Correlación Geológica (INSUGEO), CONICET- UNT, Av Perón s/n, Yerba Buena, Tucumán, Argentina.

出版信息

Environ Microbiol Rep. 2021 Oct;13(5):659-667. doi: 10.1111/1758-2229.12977. Epub 2021 Jun 5.

Abstract

Microbialite-producing microorganisms that inhabit the Puna lakes are traditionally considered constituents of fragile microsystems, unable to resist important environmental variations. Nevertheless, this region has experienced significant climatic fluctuations during the Holocene, raising the unsolved issue on how microbialite-forming systems have been able to resist these changes. Turquesa lake, located within Quaternary Peinado lake-basin (Puna), faces a hydric crisis in the last decades, which modified their physicochemical conditions. However, there has been a rapid re-establishment of the microbialite systems once the main parameters were stabilized, which allowed the establishment of three new microbialite levels in the coast and paleo-coastline. The aim of this contribution is to report for the first time microbialite levels in Turquesa lake, providing a multiscale analysis, besides an accurate study of the physico-chemical context of the lake. This new record provided us the opportunity to demonstrate the short-term resilience capacity of these microbialite-producing microorganisms to climatic changes, offering a key approach to understand analogue processes throughout Earth history.

摘要

栖息在普纳湖泊中的产微生物岩微生物,传统上被认为是脆弱微系统的组成部分,无法抵抗重要的环境变化。然而,该地区在全新世经历了显著的气候变化,这就提出了一个尚未解决的问题,即微生物岩形成系统如何能够抵抗这些变化。位于第四纪佩纳多湖盆地(普纳)内的绿松石湖,在过去几十年中面临着水资源危机,这改变了它们的理化条件。然而,一旦主要参数稳定下来,微生物岩系统就迅速得到了重建,在海岸和古海岸线上建立了三个新的微生物岩层。本研究的目的是首次报道绿松石湖中微生物岩层的情况,提供多尺度分析,并对湖泊的理化背景进行精确研究。这一新记录使我们有机会展示这些产微生物岩微生物对气候变化的短期恢复能力,为了解地球历史上类似过程提供了一个关键方法。

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