Department of Biology, Section of Microbial Ecology, Lund University, Lund, Sweden.
Centre for Environmental and Climate Research (CEC), Lund University, Lund, Sweden.
ISME J. 2019 Mar;13(3):836-846. doi: 10.1038/s41396-018-0313-8. Epub 2018 Nov 16.
Salinization is recognized as a threat to soil fertility worldwide. A challenge in understanding the effects of salinity on soil microbial communities is the fact that it can be difficult to disentangle the effects of salinity from those of other variables that may co-vary with salinity. Here we use a trait-based approach to identify direct effects of salinity on soil bacterial communities across two salinity gradients. Through dose-response relationships between salinity and bacterial growth, we quantified distributions of the trait salt tolerance within the communities. Community salt tolerance was closely correlated with soil salinity, indicating a strong filtering effect of salinity on the bacterial communities. Accompanying the increases in salt tolerance were consistent shifts in bacterial community composition. We identified specific bacterial taxa that increased in relative abundances with community salt tolerance, which could be used as bioindicators for high community salt tolerance. A strong filtering effect was also observed for pH across the gradients, with pH tolerance of bacterial communities correlated to soil pH. We propose phenotypic trait distributions aggregated at the community level as a useful approach to study the role of environmental factors as filters of microbial community composition.
盐渍化被认为是全球范围内土壤肥力的威胁。理解盐分对土壤微生物群落影响的一个挑战是,很难将盐分的影响与可能与盐分共同变化的其他变量的影响区分开来。在这里,我们使用基于特征的方法来确定盐分对两个盐度梯度中土壤细菌群落的直接影响。通过盐分和细菌生长之间的剂量-反应关系,我们量化了群落中盐耐受性特征的分布。群落盐耐受性与土壤盐分密切相关,表明盐分对细菌群落具有很强的过滤作用。随着盐耐受性的增加,细菌群落组成也发生了一致的变化。我们确定了相对丰度随群落盐耐受性增加而增加的特定细菌分类群,它们可用作高群落盐耐受性的生物标志物。在整个梯度中,pH 值也表现出很强的过滤作用,细菌群落的 pH 值耐受性与土壤 pH 值相关。我们提出将表型特征分布在群落水平上进行聚合,作为研究环境因素作为微生物群落组成过滤器的有用方法。