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融水流强度对南极洲麦克默多干谷微生物席时空异质性的影响。

Impact of meltwater flow intensity on the spatiotemporal heterogeneity of microbial mats in the McMurdo Dry Valleys, Antarctica.

作者信息

Zoumplis A, Kolody B, Kaul D, Zheng H, Venepally P, McKnight D M, Takacs-Vesbach C, DeVries A, Allen A E

机构信息

Scripps Institution of Oceanography, University of California, San Diego, CA, USA.

Microbial and Environmental Genomics Group, J. Craig Venter Institute, La Jolla, CA, USA.

出版信息

ISME Commun. 2023 Jan 23;3(1):3. doi: 10.1038/s43705-022-00202-8.

Abstract

The meltwater streams of the McMurdo Dry Valleys are hot spots of biological diversity in the climate-sensitive polar desert landscape. Microbial mats, largely comprised of cyanobacteria, dominate the streams which flow for a brief window of time (~10 weeks) over the austral summer. These communities, critical to nutrient and carbon cycling, display previously uncharacterized patterns of rapid destabilization and recovery upon exposure to variable and physiologically detrimental conditions. Here, we characterize changes in biodiversity, transcriptional responses and activity of microbial mats in response to hydrological disturbance over spatiotemporal gradients. While diverse metabolic strategies persist between marginal mats and main channel mats, data collected from 4 time points during the austral summer revealed a homogenization of the mat communities during the mid-season peak meltwater flow, directly influencing the biogeochemical roles of this stream ecosystem. Gene expression pattern analyses identified strong functional sensitivities of nitrogen-fixing marginal mats to changes in hydrological activities. Stress response markers detailed the environmental challenges of each microhabitat and the molecular mechanisms underpinning survival in a polar desert ecosystem at the forefront of climate change. At mid and end points in the flow cycle, mobile genetic elements were upregulated across all mat types indicating high degrees of genome evolvability and transcriptional synchronies. Additionally, we identified novel antifreeze activity in the stream microbial mats indicating the presence of ice-binding proteins (IBPs). Cumulatively, these data provide a new view of active intra-stream diversity, biotic interactions and alterations in ecosystem function over a high-flow hydrological regime.

摘要

麦克默多干谷的融水流是气候敏感型极地沙漠景观中生物多样性的热点地区。微生物垫主要由蓝细菌组成,在南极夏季的短暂时间段(约10周)内主导着这些溪流。这些群落对养分和碳循环至关重要,在暴露于多变且对生理有害的条件下时,呈现出此前未被描述的快速不稳定和恢复模式。在此,我们描述了微生物垫在时空梯度上对水文干扰的生物多样性、转录反应和活性变化。虽然边缘微生物垫和主河道微生物垫之间存在多种代谢策略,但在南极夏季的4个时间点收集的数据显示,在融水流量的季节中期峰值期间,微生物垫群落出现了同质化,这直接影响了该溪流生态系统的生物地球化学作用。基因表达模式分析确定了固氮边缘微生物垫对水文活动变化具有很强的功能敏感性。应激反应标记详细说明了每个微生境的环境挑战以及在气候变化前沿的极地沙漠生态系统中生存的分子机制。在水流周期的中期和末期,所有类型的微生物垫中可移动遗传元件均上调,表明基因组具有高度的可进化性和转录同步性。此外,我们在溪流微生物垫中发现了新的抗冻活性,表明存在冰结合蛋白(IBP)。总体而言,这些数据为高流量水文条件下溪流内部的活性多样性、生物相互作用和生态系统功能变化提供了新的视角。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2688/9870883/9c369e407284/43705_2022_202_Fig1_HTML.jpg

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