Torti Andrea, Lever Mark Alexander, Jørgensen Bo Barker
Center for Geomicrobiology, Department for Bioscience, Aarhus University, Ny Munkegade 116, Building 1535 DK-8000 Aarhus C, Denmark.
Institute of Biogeochemistry and Pollutant Dynamics, Department of Environmental Systems Sciences, Swiss Federal Institute of Technology Zurich (ETHZ), Universitätstrasse 16, 8092, Zürich, Switzerland.
Mar Genomics. 2015 Dec;24 Pt 3:185-96. doi: 10.1016/j.margen.2015.08.007.
In marine sediments, DNA occurs both inside and outside living organisms. DNA not enclosed in living cells may account for the largest fraction of total DNA, and include molecules locked within dead cells, organic and inorganic aggregates, adsorbed onto mineral matrices, and viral DNA. This DNA comprises genetic material released in situ from sediment microbial communities, as well as DNA of pelagic and terrestrial origin deposited to the seafloor. DNA not enclosed in living cells undermines the assumption of a direct link between the overall DNA pool and the local, currently living microbial assemblages, in terms of both microbial cell abundance and diversity. At the same time, the extracellular DNA may provide an integrated view of the biodiversity and ecological processes occurring on land, in marine water columns, and sediments themselves, thereby acting as an archive of genetic information which can be used to reconstruct past changes in source environments. In this review, we identify and discuss DNA pools in marine sediments, with special focus on DNA not enclosed in living cells, its origin, dynamics, and ecological and methodological implications. Achievements in deciphering the genetic information held within each DNA pool are presented along with still-standing challenges and major gaps in current knowledge.
在海洋沉积物中,DNA存在于生物体内部和外部。未被封闭在活细胞内的DNA可能占总DNA的最大比例,包括锁在死细胞内的分子、有机和无机聚集体、吸附在矿物基质上的分子以及病毒DNA。这种DNA包含从沉积物微生物群落原位释放的遗传物质,以及沉积到海底的海洋和陆地来源的DNA。未被封闭在活细胞内的DNA破坏了在微生物细胞丰度和多样性方面整体DNA库与当地当前生存的微生物群落之间存在直接联系的假设。同时,细胞外DNA可以提供关于陆地、海洋水柱和沉积物本身发生的生物多样性和生态过程的综合视图,从而充当可用于重建源环境过去变化的遗传信息档案。在本综述中,我们识别并讨论海洋沉积物中的DNA库,特别关注未被封闭在活细胞内的DNA、其来源、动态以及生态和方法学意义。还介绍了在解读每个DNA库中所含遗传信息方面取得的成就,以及当前知识中仍然存在的挑战和主要差距。