Almela Pablo, Casero Cristina, Justel Ana, Quesada Antonio
Department of Biology, Universidad Autónoma de Madrid, Madrid, Spain.
Department of Mathematics, Universidad Autónoma de Madrid, Madrid, Spain.
FEMS Microbiol Ecol. 2022 Apr 27;98(4). doi: 10.1093/femsec/fiac029.
Cyanobacteria are key organisms in the Antarctic ecosystem, but the primary succession of its communities in recently deglaciated soils remains poorly understood. In this study, we surveyed the primary succession of cyanobacterial communities with an in-depth Next Generation Sequencing approach in three Antarctic recently glacier forefields. Despite the similar physicochemical characteristics of the soils, we did not find a common pattern in the distribution of the cyanobacterial communities at the finest level of taxonomic resolution. However, the metabarcoding analysis revealed a common community of 14 cyanobacterial identical sequences in all the studied soils, whose lineages were not restricted to polar or alpine biotopes. These ASVs comprised a relative abundance within the cyanobacterial community of 51.5%-81.7% among the three locations and were also found in two cyanobacterial mats from the Antarctic Peninsula. Our results suggest that (micro)biotic interactions act as a key driver of the community composition and dynamics of Cyanobacteria during the early stages of succession in recently deglaciated soils of Antarctica. A few common genera might play a key role in the ecosystem, due to its ubiquitous presence not only in these soils but also in microbial mats, conforming probably the most widely disperse and dominant single genotypes in Antarctic soils.
蓝细菌是南极生态系统中的关键生物,但在最近冰退的土壤中其群落的初级演替仍知之甚少。在本研究中,我们采用深入的下一代测序方法,对三个南极近期冰川前缘地区的蓝细菌群落初级演替进行了调查。尽管土壤的理化特性相似,但在最精细的分类分辨率水平上,我们并未发现蓝细菌群落分布的共同模式。然而,元条形码分析揭示了所有研究土壤中14个蓝细菌相同序列的共同群落,其谱系不限于极地或高山生物群落。这些扩增子序列变体在三个地点的蓝细菌群落中的相对丰度为51.5%-81.7%,并且在南极半岛的两个蓝细菌席中也有发现。我们的结果表明,(微)生物相互作用是南极近期冰退土壤演替早期蓝细菌群落组成和动态的关键驱动因素。一些常见属可能在生态系统中起关键作用,因为它们不仅在这些土壤中普遍存在,而且在微生物席中也存在,可能构成了南极土壤中分布最广、占主导地位的单一基因型。