生物
土壤水分
生态学
生态系统
群落结构
α多样性
β多样性
真菌多样性
微生物种群生物学
气候变化
土壤微生物学
全球变暖
生物多样性
微生物生态学
丰度(生态学)
细菌
遗传学
作者
Ciro Sannino,Nicoletta Cannone,Federica D’Alò,Andrea Franzetti,Isabella Gandolfi,Francesca Pittino,Benedetta Turchetti,Ambra Mezzasoma,Laura Zucconi,Pietro Buzzini,Mauro Guglielmin,Silvano Onofri
标识
DOI:10.1111/1462-2920.16090
摘要
The impact of global warming on biological communities colonizing European alpine ecosystems was recently studied. Hexagonal open top chambers (OTCs) were used for simulating a short-term in situ warming (estimated around 1°C) in some alpine soils to predict the impact of ongoing climate change on resident microbial communities. Total microbial DNA was extracted from soils collected either inside or outside the OTCs over 3 years of study. Bacterial and fungal rRNA copies were quantified by qPCR. Metabarcoding sequencing of taxonomy target genes was performed (Illumina MiSeq) and processed by bioinformatic tools. Alpha- and beta-diversity were used to evaluate the structure of bacterial and fungal communities. qPCR suggests that, although fluctuations have been observed between soils collected either inside and outside the OTCs, the simulated warming induced a significant (p < 0.05) shift only for bacterial abundance. Likewise, significant (p < 0.05) changes in bacterial community structure were detected in soils collected inside the OTCs, with a clear increase of oligotrophic taxa. On the contrary, fungal diversity of soils collected either inside and outside the OTCs did not exhibit significant (p < 0.05) differences, suggesting that the temperature increase in OTCs compared to ambient conditions was not sufficient to change fungal communities.
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