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Число соавторов публикации - 8
Целевой показатель госзадания:
  • Рецензируемые научные статьи в периодических журналах, индексируемых в WEB of Science (WoS) - Q1 - Формула: 30/корень квадратный из Nавторов = 30/корень квадратный из 8 (2.8284) = 10.61
  • Рецензируемые научные статьи в периодических журналах, индексируемых в SCOPUS - Q2 - Формула: 10/корень квадратный из Nавторов = 10/корень квадратный из 8 (2.8284) = 3.54
Количество соавторов публикации - 8
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/(8*2) = 0.625
Статья в периодическом издании

Dynamics of Microbial Abundance in Unvegetated and Seagrass Habitats: A Case Study

WoS 2.700/Q1 SCOPUS 0.579/Q2 БС 2
DOI https://doi.org/10.3390/jmse13061048
Язык Английский
Журнал Journal of Marine Science and Engineering

ISSN: —; Онлайн ISSN: 2077-1312
Год 2025
Выходные данные том: 13; выпуск: 6; статья: 1048; страниц (электронный ресурс): 14
Авторы
  1. Olivia M.
    Institute of Marine Environment and Ecology, National Taiwan Ocean University, Keelung 20224, Taiwan (twn)
    Doctoral Degree Program in Ocean Resource and Environmental Changes, National Taiwan Ocean University, Keelung 20224, Taiwan (twn)
    Doctoral Degree Program in Ocean Resource and Environmental Changes, National Taiwan Ocean University, Keelung 20224, Taiwan (twn)
  2. Chen P. W.-Y.
    Institute of Marine Environment and Ecology, National Taiwan Ocean University, Keelung 20224, Taiwan (twn)
    Doctoral Degree Program in Ocean Resource and Environmental Changes, National Taiwan Ocean University, Keelung 20224, Taiwan (twn)
    Center of Excellence for the Oceans, National Taiwan Ocean University, Keelung 20224, Taiwan (twn)
  3. Annabel C. N.
    Institute of Marine Environment and Ecology, National Taiwan Ocean University, Keelung 20224, Taiwan (twn)
  4. Chou W.-C.
    Institute of Marine Environment and Ecology, National Taiwan Ocean University, Keelung 20224, Taiwan (twn)
    Doctoral Degree Program in Ocean Resource and Environmental Changes, National Taiwan Ocean University, Keelung 20224, Taiwan (twn)
    Center of Excellence for the Oceans, National Taiwan Ocean University, Keelung 20224, Taiwan (twn)
  5. Chen J.-J.
    Department of Marine Environmental Engineering, National Kaohsiung University of Science and Technology, Kaohsiung 81157, Taiwan (twn)
  6. Муханов В. С. (Mukhanov V.)
    Доп. аффилиация: Laboratory of Marine Ecosystems, Institute for Advanced Research, Sevastopol State University, 299053 Sevastopol, Russia (ru)
  7. Chao C.-F.
    Institute of Marine Environment and Ecology, National Taiwan Ocean University, Keelung 20224, Taiwan (twn)
  8. Tsai A.-Y.
    Institute of Marine Environment and Ecology, National Taiwan Ocean University, Keelung 20224, Taiwan (twn)
    Doctoral Degree Program in Ocean Resource and Environmental Changes, National Taiwan Ocean University, Keelung 20224, Taiwan (twn)
    Center of Excellence for the Oceans, National Taiwan Ocean University, Keelung 20224, Taiwan (twn)
Даты Поступила в редакцию: 12.04.2025
После доработки: 13.05.2025
Принята к публикации: 24.05.2025
Опубликована: 26.05.2025
Абстракт Seagrass meadows are recognized for their ecological importance, yet their influence on microbial community structure remains insufficiently characterized. This study examined the effects of seagrass presence on microbial assemblages in a subtropical coastal environment by comparing seagrass habitats to adjacent unvegetated sediments. Microbial abundances, including viruses, bacteria, picophytoplankton (Synechococcus spp. and picoeukaryotes), and heterotrophic nanoflagellates, were quantified using flow cytometry. Viral concentrations were significantly higher in seagrass treatments (2.4–9.2 × 106 viruses mL−1) than in controls (0.6–2.0 × 106 viruses mL−1), while bacterial abundances were slightly lower in seagrass treatments (5.1–16.0 × 105 cells mL−1) than in controls (7.9–16.6 × 105 cells mL−1). As a result, the virus-to-bacteria ratio (VBR) was significantly elevated in seagrass habitats, suggesting enhanced viral regulation of bacterial populations. Additionally, picophytoplankton and heterotrophic nanoflagellates increased in seagrass incubations, with strong correlations indicating that nanoflagellates are likely major grazers of picophytoplankton. These results highlight the role of seagrass habitats in modulating microbial interactions and emphasize the need to consider habitat-specific characteristics when evaluating microbial dynamics and biogeochemical processes in coastal systems.
Ключевые слова: seagrass, viruses, bacteria, picophytoplankton, nanoflagellate, viral-to-bacterial abundance ratios (VBR)
Сведения о финансировании, указанные в публикации This research was supported by the Ministry of Science and Technology, ROC (Taiwan), grant number MOST 113-2119-M-019-002.
URL https://www.mdpi.com/2077-1312/13/6/1048
Дополнительные сведения
IBSS 155

Запись создана: 17-06-2025 10:06
Последнее изменение: 31-08-2025 12:34

Страница журнала в E-library
Библиографическая ссылка:
Olivia M., Chen P. W.-Y., Annabel C. N., Chou W.-C., Chen J.-J., Mukhanov V., Chao C.-F., Tsai A.-Y. Dynamics of Microbial Abundance in Unvegetated and Seagrass Habitats: A Case Study // Journal of Marine Science and Engineering. 2025. Vol. 13, iss. 6. Art. no. 1048 (14 p.). https://doi.org/10.3390/jmse13061048
[WoS 2.700/Q1][SCOPUS 0.579/Q2][БС 2]
Экспертное заключение: № 319, 2025
Белый список
Уровень БС
2
Индексация на момент включения в базу:
Web of Science
Статус
Да
Импакт-фактор/Квартиль(год)
2.700/Q1 (2023)
Идентификатор
001516780400001
SCOPUS
Статус
Да
Импакт-фактор/Квартиль(год)
0.579/Q2 (2024)
Идентификатор
2-s2.0-105008996911
РИНЦ
Статус
Нет
ID
82463102
EDN
TRITMQ

Публикация отнесена к госзаданию:

№ 124030400057-4 «Трансформация структуры и функций экосистем морской пелагиали в условиях антропогенного воздействия и изменения климата»