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Impact of hydrologic boundaries on microbial planktonic and biofilm communities in shallow terrestrial subsurface environments

机译:水文边界对浅层地下环境微生物浮游生物和生物膜社区的影响

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摘要

Subsurface environments contain a large proportion of planetary microbial biomass and harbor diverse communities responsible for mediating biogeochemical cycles important to groundwater used by human society for consumption, irrigation, agriculture and industry. Within the saturated zone, capillary fringe and vadose zones, microorganisms can reside in two distinct phases (planktonic or biofilm), and significant differences in community composition, structure and activity between free-living and attached communities are commonly accepted. However, largely due to sampling constraints and the challenges of working with solid substrata, the contribution of each phase to subsurface processes is largely unresolved. Here, we synthesize current information on the diversity and activity of shallow freshwater subsurface habitats, discuss the challenges associated with sampling planktonic and biofilm communities across spatial, temporal and geological gradients, and discuss how biofilms may be constrained within shallow terrestrial subsurface aquifers. We suggest that merging traditional activity measurements and sequencing/-omics technologies with hydrological parameters important to sediment biofilm assembly and stability will help delineate key system parameters. Ultimately, integration will enhance our understanding of shallow subsurface ecophysiology in terms of bulk-flow through porous media and distinguish the respective activities of sessile microbial communities from more transient planktonic communities to ecosystem service and maintenance.
机译:地下环境含有大量的行星微生物生物量和港口各种社区,负责介导人类社会消费,灌溉,农业和工业的地下水重要的生物地球化学循环。在饱和区内,毛细血管条纹和囊糖区,微生物可以居住在两个不同的阶段(浮游或生物膜)中,并且通常接受自由生活和附加社区之间的社区组成,结构和活动的显着差异。然而,在很大程度上由于采样约束和使用实心子数据的挑战,每个阶段对地下过程的贡献大大未得到解决。在这里,我们综合了关于浅淡水地下栖息地的多样性和活动的当前信息,讨论了跨空间,时间和地质梯度的采样浮游和生物膜社区相关的挑战,并讨论生物膜如何限制在浅层地面含水层内。我们建议将传统的活动测量和测序/ - 测序/ - 测序/ - 测序/ - 沉积物的水文参数与沉积物生物膜组装和稳定性重要,这将有助于描绘关键系统参数。最终,整合将通过多孔介质在散装流动方面提高我们对浅层地下生态学的理解,并区分从更多瞬态的浮网社区与生态系统服务和维护的各个术语微生物社区的各个活动。

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