College of Construction Engineering, Jilin University, Changchun 130026, China.
Xi'an Center of China Geological Survey, Xi'an 710054, China.
Sci Total Environ. 2021 Feb 10;755(Pt 1):142423. doi: 10.1016/j.scitotenv.2020.142423. Epub 2020 Sep 21.
Bacterial community has been significantly enrolled in the biogeochemical cycling of the coastal subsurface ecosystem. The bacterial community variations with salinity have been extensively investigated in the surface environment, such as lake, soil, and estuary, but not in the subsurface environment. Here we explore the responses of bacterial populations to the salinity and other environmental factors (EFs) by considering both the abundant and rare sub-community in a coastal Holocene groundwater system. Our study results indicate that the bacterial diversity was independent of the salinity in both the abundance and rare sub-community. Besides diversity, no flourishing of abundant bacteria relative abundance is observed with increasing or decreasing salinity. Yet the rare taxa exhibit a bio-growth with salinity, which has a significant correlation (p < 0.001) with sulfate concentration. The responses of the abundant sub-community taxa to nutrients, temperature, pH, and dissolved oxygen are insensitive. However, the correlation between δO, δD and the entire community diversity is significant, which demonstrates the bacterial community is affected by the groundwater origin. Besides, not all the species in one class or order are necessarily shaped by the same factor. To quantify the impact of EFs on the community properties, analyses in different taxonomic levels is suggested. These findings imply that the spatial organization of microbial communities is complicated and influenced by multiple factors on a regional scale. The investigated results are useful for understanding biogeochemical processes in the coastal groundwater.
细菌群落已被广泛应用于海岸亚表层生态系统的生物地球化学循环中。在表层环境(如湖泊、土壤和河口)中,已经广泛研究了细菌群落随盐度的变化,但在亚表层环境中却没有。在这里,我们通过考虑沿海全新世地下水系统中丰富和稀有亚群落的方式,来探索细菌种群对盐度和其他环境因子(EFs)的响应。我们的研究结果表明,在丰度和稀有亚群落中,细菌多样性与盐度无关。除了多样性之外,随着盐度的增加或减少,丰富的细菌相对丰度并没有明显增加。然而,稀有分类群的生物生长与盐度有关,与硫酸盐浓度有显著相关性(p < 0.001)。丰度亚群分类群对养分、温度、pH 和溶解氧的响应不敏感。然而,整个群落多样性与 δO 和 δD 之间的相关性是显著的,这表明细菌群落受到地下水来源的影响。此外,同一类或目中的并非所有物种都必然受到相同因素的影响。为了量化 EFs 对群落特性的影响,建议在不同的分类水平上进行分析。这些发现表明,微生物群落的空间组织是复杂的,受到区域尺度上多个因素的影响。调查结果有助于理解海岸地下水的生物地球化学过程。