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Mirasbekov, Y.

Publications and source records attributed to Mirasbekov, Y..

2 recordsLinked to original sources

From colonial clusters to colonial "sheaths": analysis of Microcystis morphospecies in mesocosm by imaging flow cytometry

The alarming increase in the frequency of blooms of Microcystis in freshwater lakes and reservoirs occurs worldwide, with major implications for their ecosystem functioning and water quality. We applied FlowCAM-based imaging flow cytometry together with PCR and sequencing to get a comprehensive picture of the seasonal development of Microcystis community in a long-term running lake mesocosm experiment. The IFC analysis with manual taxonomic classification confirmed early findings with a machine learning algorithm that some Microcystis morphospecies completely disappeared and re-appeared along the mesocosm experiment timeline. This observation supports the hypothesis of the main transition pathways of colonial Microcystis. For the first time, colonial mucilaginous envelopes or sheaths were reported as separate entities, and not as a part of Microcystis colonies. The colonial sheaths may contain a few single Microcystis cells and reach significant numbers (thousands) during a cyanobacterial bloom. We also found that non-identifiable colonial small clusters of Microcystis cells are an important stage in the complex mosaic of a Microcystis bloom and are associated with the development of colonial forms. Our findings were validated by the principal component analysis coupled with the constructed associative matrices. We hypothesize that colonial sheaths may be crucial at Microcystis spp. dispersal and represent one of the stages of colonies development.

ecology↗

Long-term temperature trend in Kamchatka supports expansion of harmful algae

Ocean coastal ecosystems are changing, and global shifts in temperature lead to the expansion and intensification of harmful algae. In conjunction with anthropogenic effects it may result in future exacerbation of harmful algal blooms. Here we use the 2002-2020 years record of surface ocean temperature data retrieved from Sentinel-2 satellite to examine the recent temperature trend in Avacha Bay, Kamchatka Peninsula. Satellite analysis demonstrated a temperature increase trend in ocean surface water during spring and summer months and detected algal bloom in July 2020 preceding a mass death of marine benthic life in September-October 2020. Using 16S rRNA and 18S rRNA gene amplicon nanopore-based sequencing, we analyzed microbial and microalgal communities in the water samples from area of 2020 algal blooms. Our results suggest the presence of potentially toxic and bloom-forming algae from genera related to former HABs (harmful algal blooms) in the Avacha Bay region. A better understanding of the potentially toxic algae phytoplankton composition in the shifting temperature environment and time-series monitoring of HABs is of utmost importance for scientific community. We suggest that satellite analysis in combination with eDNA monitoring by nanopore-based sequencing represents promising option to detect potentially toxic algae and follow bloom development.

ecology↗