Marked Succession of Cyanobacterial Communities Following Glacier Retreat in the High Arctic

被引:29
|
作者
Pessi, Igor S. [1 ,2 ]
Pushkareva, Ekaterina [3 ]
Lara, Yannick [1 ,4 ]
Borderie, Fabien [1 ,5 ]
Wilmotte, Annick [1 ]
Elster, Josef [3 ,6 ]
机构
[1] Univ Liege, InBioS Ctr Prot Engn, Allee Six Aout 13,B6a, B-4000 Liege, Belgium
[2] Univ Helsinki, Dept Microbiol, POB 56,Viikinkaari 9, Helsinki 00014, Finland
[3] Univ South Bohemia, Ctr Polar Ecol, Zlate Stoce 3, Ceske Budejovice 37005, Czech Republic
[4] Univ Liege, UR Geol Palaeobiogeol Palaeobot Palaeopalynol, Allee Six Aout14,B18, B-4000 Liege, Belgium
[5] Univ Bourgogne Franche Comte UsC, INRA, CNRS, Lab Chronoenvironm,UMR 6249, Campus Bouloie,Route Gray 16, F-25030 Besancon, France
[6] Acad Sci Czech Republ, Inst Bot, Dukelska 135, CS-37982 Trebon, Czech Republic
关键词
Cyanobacteria; Glacier forefield; High Arctic; High-throughput sequencing; Primary succession; Proglacial soil; BIOLOGICAL SOIL CRUSTS; BACTERIAL SUCCESSION; CENTRAL SPITSBERGEN; CRYOCONITE HOLES; DIVERSITY; ECOSYSTEM; VEGETATION; FOREFIELD; PATTERNS; BAY;
D O I
10.1007/s00248-018-1203-3
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
Cyanobacteria are important colonizers of recently deglaciated proglacial soil but an in-depth investigation of cyanobacterial succession following glacier retreat has not yet been carried out. Here, we report on the successional trajectories of cyanobacterial communities in biological soil crusts (BSCs) along a 100-year deglaciation gradient in three glacier forefields in central Svalbard, High Arctic. Distance from the glacier terminus was used as a proxy for soil age (years since deglaciation), and cyanobacterial abundance and community composition were evaluated by epifluorescence microscopy and pyrosequencing of partial 16S rRNA gene sequences, respectively. Succession was characterized by a decrease in phylotype richness and a marked shift in community structure, resulting in a clear separation between early (10-20years since deglaciation), mid (30-50years), and late (80-100years) communities. Changes in cyanobacterial community structure were mainly connectedwith soil age and associated shifts in soil chemical composition (mainly moisture, SOC, SMN, K, and Na concentrations). Phylotypes associated with early communities were related either to potentially novel lineages (<97.5% similar to sequences currently available in GenBank) or lineages predominantly restricted to polar and alpine biotopes, suggesting that the initial colonization of proglacial soil is accomplished by cyanobacteria transported from nearby glacial environments. Late communities, on the other hand, included more widely distributed genotypes, which appear to establish only after the microenvironment has been modified by the pioneering taxa.
引用
收藏
页码:136 / 147
页数:12
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