Kaminsky Rachel, Morales Sergio E
Department of Microbiology and Immunology, University of Otago, Dunedin, New Zealand.
Front Microbiol. 2018 Apr 27;9:809. doi: 10.3389/fmicb.2018.00809. eCollection 2018.
The rare biosphere is predicted to aid in maintaining functional redundancy as well as contributing to community turnover across many environments. Recent developments have partially confirmed these hypotheses, while also giving new insights into dormancy and activity among rare communities. However, less attention has been paid to the rare biosphere in soils. This study provides insight into the rare biosphere's contribution to soil microbial diversity through the study of 781 soil samples representing 24 edaphically diverse sites. Results show that Bray-Curtis dissimilarity for time-sensitive conditionally rare taxa (CRT) does not correlate with whole community dissimilarity, while dissimilarity for space-sensitive CRT only weakly correlate with whole community dissimilarity. This adds to current understanding of spatiotemporal filtering of rare taxa, showing that CRT do not account for community variance across tested soils, but are under the same selective pressure as the whole community.
稀有生物圈预计有助于维持功能冗余,并在许多环境中促进群落更替。最近的研究进展部分证实了这些假设,同时也为稀有群落中的休眠和活动提供了新的见解。然而,土壤中的稀有生物圈受到的关注较少。本研究通过对代表24个土壤条件多样地点的781个土壤样本进行研究,深入了解了稀有生物圈对土壤微生物多样性的贡献。结果表明,对时间敏感的条件稀有分类群(CRT)的布雷-柯蒂斯差异与整个群落的差异不相关,而对空间敏感的CRT的差异与整个群落的差异仅存在微弱的相关性。这增加了我们目前对稀有分类群时空过滤的理解,表明CRT并不能解释所测试土壤中群落的差异,但与整个群落受到相同的选择压力。