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Дата внесения публикации в базу 27-01-2025 15:55 не попадает в период стимулирования 01-06-2025 – 31-05-2026
КБПР (методика 2025 г.) = 1
Количество соавторов публикации - 5
Публикация в изданиях из Белого списка уровень: 2, K=10
Публикация в изданиях из Белого списка уровень: 2, K=10
-
Муханов В. С.: количество аффилиаций - 2, вклад в КБПР публикации:
формула: K/(Nсоавторов*Nаффил) = 10/(5*2) = 1
Статья в периодическом издании
Experimental warming effects on microbial community growth and mortality during the cold season in coastal waters of Taiwan and Japan
| DOI | https://doi.org/10.1016/j.csr.2025.105407 |
|---|---|
| Язык | Английский |
| Журнал | Continental Shelf Research ISSN: 0278-4343; Онлайн ISSN: – |
| Год | 2025 |
| Выходные данные | том: 286; статья: 105407; страниц (электронный ресурс): 9 |
| Авторы | |
| Даты |
Поступила в редакцию: 15.08.2024 После доработки: 01.01.2025 Принята к публикации: 11.01.2025 Опубликована онлайн: 19.01.2025 |
| Абстракт | We conducted three in situ microcosm experiments in Taiwan and Japan during the winter of 2023 to investigate microbial plankton community responses to warming in Pacific coastal waters. Monitoring and analyzing microbial communities, including viruses, bacteria, and picophytoplankton (Synechococcus spp., Prochlorococcus spp., and picoeukaryotes), were performed by flow cytometry over seven consecutive days. Control microcosms were maintained at ambient coastal water temperature, while experimental microcosms were warmed by + 2–3°C. The modified dilution method estimated picoplankton (heterotrophic bacteria and picophytoplankton) growth, grazing, and viral lysis rates on days two and five. Our time-series incubation experiments revealed that warming did not increase bacterial abundance, but viral abundance significantly increased with temperature, indicating a strong lytic impact on bacteria. Moreover, the relative increase in viral abundance was related to a rise in Synechococcus spp. abundance under warming conditions across all study sites, relative to ambient conditions. Similar trends were observed in nanoflagellate abundance between the two treatments across all stations. In modified dilution experiments, viral lysis accounted for up to 51% of picoplankton mortality, compared to total mortality, indicating that viral lysis was the primary driver of picoplankton mortality under warmed conditions. These findings highlight the critical role of viruses in cold marine environments and suggest the potential for modeling viral functions to predict the effects of global warming on microbial dynamics. Ключевые слова: viruses, bacteria, picophytoplankton, Synechococcus spp., Prochlorococcus spp., picoeukaryotes, warming, viral shunt |
| Сведения о финансировании, указанные в публикации | The research was conducted in the frame of the Russian state assignments No.121040600178–6, 121121700354–9 (the program ‘Prioritet-2030’ of Sevastopol State University) and supported by RFBR project 21-55-52001, and the Ministry of Science and Technology, ROC (Taiwan), grant number NSC 109-2611-M-019-013 and MOST 111-2119-M-019-002. |
| URL | https://www.sciencedirect.com/science/article/abs/pii/S027843432500007X |
| Дополнительные сведения |
Запись создана: 27-01-2025 15:55
Последнее изменение: 16-04-2026 15:44
Библиографическая ссылка:
Olivia M., Chen P. W.-Y., Ho P.-C., Mukhanov V., Tsai A.-Y. Experimental warming effects on microbial community growth and mortality during the cold season in coastal waters of Taiwan and Japan // Continental Shelf Research. 2025. Vol. 286. Art. no. 105407 (9 p.). https://doi.org/10.1016/j.csr.2025.105407
[WoS 2.100/Q2][SCOPUS 0.660/Q1][БС 2]
Olivia M., Chen P. W.-Y., Ho P.-C., Mukhanov V., Tsai A.-Y. Experimental warming effects on microbial community growth and mortality during the cold season in coastal waters of Taiwan and Japan // Continental Shelf Research. 2025. Vol. 286. Art. no. 105407 (9 p.). https://doi.org/10.1016/j.csr.2025.105407
[WoS 2.100/Q2][SCOPUS 0.660/Q1][БС 2]
Экспертное заключение: № 73, 2025
Белый список
Индексация на момент включения в базу:- Уровень БС
- 2
Web of Science
- Статус
- Да
- Импакт-фактор/Квартиль(год)
- 2.100/Q2 (2023)
- Идентификатор
- 001408516800001
- Статус
- Да
- Импакт-фактор/Квартиль(год)
- 0.660/Q1 (2023)
- Идентификатор
- 2-s2.0-85215539492
В публикации указано госзадание:
№ 121040600178-6 «Структурно-функциональная организация, продуктивность и устойчивость морских пелагических экосистем» (предыдущий номер АААА-А18-118020790229-7)
Публикация отнесена к госзаданию:
№ 124030400057-4 «Трансформация структуры и функций экосистем морской пелагиали в условиях антропогенного воздействия и изменения климата»


