Weathering extents and anthropogenic influences shape the soil bacterial community along a subsurface zonation

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초록

Subsurface environments are composed of various active soil layers with dynamic biogeochemical interactions. We investigated soil bacterial community composition and geochemical properties along a vertical soil profile, which was categorized into surface, unsaturated, groundwater fluctuated, and saturated zones, in a testbed site formerly used as farmland for several decades. We hypothesized that weathering extent and anthropogenic inputs influence changes in the community structure and assembly processes and have distinct contributions along the subsurface zonation. Elemental distribution in each zone was strongly affected by the extent of chemical weathering. A 16S rRNA gene analysis indicated that bacterial richness (alpha diversity) was highest in the surface zone, and also higher in the fluctuated zone, than in unsaturated and saturated zones due to the effects of high organic matter, high nutrient levels, and/or aerobic conditions. Redundancy analysis showed that major elements (P, Na), a trace element (Pb), NO3, and the weathering extent were key driving forces shaping bacterial community composition along the subsurface zonation. Assembly processes were governed by specific ecological niches, such as homogeneous selection, in the unsaturated, fluctuated, and saturated zones, while in the surface zone, they were dominated by dispersal limitation. These findings together suggest that the vertical variation in soil bacterial community assembly is zone-specific and shaped by the relative influences of deterministic vs. stochastic processes. Our results provide novel insights into the relationships between bacterial communities, environmental factors, and anthropogenic influences (e.g., fertilization, groundwater, soil contamination), and into the roles of specific ecological niches and subsurface biogeochemical processes in these relationships.

키워드

Soil bacterial communityAnthropogenic influencesSubsurface zonationEcological assembly processSoil core analysisMICROBIAL COMMUNITIESARCHAEAL COMMUNITIESASSEMBLY PROCESSESPOROUS-MEDIAMICROORGANISMSPATTERNSDEPTHBIOGEOGRAPHYSEDIMENTSHORIZONS
제목
Weathering extents and anthropogenic influences shape the soil bacterial community along a subsurface zonation
저자
Kim, Han-SukPark, KanghyunJo, Ho YoungKwon, Man Jae
DOI
10.1016/j.scitotenv.2023.162570
발행일
2023-06-10
유형
Article
저널명
Science of the Total Environment
876