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Composition and functional profiles of microbial communities in two geochemically and mineralogically different caves

洞穴 放线菌门 生物地球化学循环 古细菌 生态学 生物 酸杆菌 厚壁菌 蛋白质细菌 基因组 生态系统 细菌 古生物学 基因 16S核糖体RNA 生物化学
作者
Sahib Zada,Jian-min Xie,Min Yang,Xiao-Yu Yang,Wasim Sajjad,Muhammad Rafiq,Fariha Hasan,Zhong Hu,Hui Wang
出处
期刊:Applied Microbiology and Biotechnology [Springer Science+Business Media]
卷期号:105 (23): 8921-8936 被引量:2
标识
DOI:10.1007/s00253-021-11658-4
摘要

Microbial communities in cave ecosystems have specific survival strategies, which is far from being well explicated. Here, we reported the genetic and functional diversity of bacteria and archaea in typical limestone (Kashmir Cave) and silicate-containing (Tiser Cave) caves. X-ray diffraction (XRD) and Fourier transform infrared spectroscopic (FTIR) analyses revealed the different geochemical and mineral compositions of the two caves. Amplicon barcode sequencing revealed the dominancy of Actinobacteria and Proteobacteria in Kashmir and Tiser Caves. Bacteroidetes and Firmicutes were the dominant phyla in Tiser Cave, and the abundance is relatively small in Kashmir Cave. Archaea was also abundant prokaryotes in Kashmir Cave, but it only accounted for 0.723% of the total prokaryote sequences in Tiser Cave. Functional analysis based on metagenomic sequencing data revealed that a large number of functional potential genes involved in nutrient metabolism and biosynthesis of bioactive compounds in Tiser and Kashmir Cave samples could significantly influence the biogeochemical cycle and secondary metabolite production in cave habitats. In addition, the two caves were also found to be rich in biosynthetic genes, encoding bioactive compounds, such as monobactam and prodigiosin, indicating that these caves could be potential habitats for the isolation of antibiotics. This study provides a comprehensive insight into the diversity of bacteria and archaea in cave ecosystems and helps to better understand the special survival strategies of microorganisms in cave ecosystems.Key points• Geochemically distinct caves possess unique microbial community structure.• Cavernicoles could be important candidates for antibiotic production.• Cavernicoles are important for biogeochemical cycling.
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