Fungi are ecologically important in several ecosystem processes, yet their community composition, ecophysiological roles, and responses to changing environmental factors in historical sediments are rarely studied. Here we explored ancient fungal DNA from lake Lielais SvÄtiÅu sediment throughout the Holocene (10.5 kyr) using the ITS metabarcoding approach. Our data revealed diverse fungal taxa and smooth community changes during most of the Holocene with rapid changes occurring in the last few millennia. More precisely, plankton parasitic fungi became more diverse from the Late Holocene (2-4 kyr) which could be related to a shift towards a cooler climate. The Latest Holocene (~2 kyr) showed a distinct increase in the richness of plankton parasites, mycorrhizal, and plant pathogenic fungi which can be associated with an increased transfer rate of plant material into the lake and blooms of planktonic organisms influenced by increased, yet moderate, human impact. Thus, major community shifts in plankton parasites and mycorrhizal fungi could be utilized as potential paleo-variables that accompany host-substrate dynamics. Our work demonstrates that fungal aDNA with predicted ecophysiology and host specificity can be employed to reconstruct both aquatic and surrounding terrestrial ecosystems and to estimate the influence of environmental change.
Sedimentary Ancient DNA (sedaDNA) Reveals Fungal Diversity and Environmental Drivers of Community Changes throughout the Holocene in the Present Boreal Lake Lielais SvÄtiÅu (Eastern Latvia).
沉积物古DNA(sedaDNA)揭示了全新世时期拉脱维亚东部北方湖泊利埃莱斯·斯瓦蒂乌(Lielais SvÄ“tiņu)的真菌多样性和群落变化的环境驱动因素
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作者:Talas Liisi, Stivrins Normunds, Veski Siim, Tedersoo Leho, Kisand Veljo
| 期刊: | Microorganisms | 影响因子: | 4.200 |
| 时间: | 2021 | 起止号: | 2021 Mar 31; 9(4):719 |
| doi: | 10.3390/microorganisms9040719 | 研究方向: | 其它 |
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