PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
April 17, 2026Journal of Marine Science and Engineering2 citationsOpen Access

Environmental Drivers and Multi-Trophic Assemblages in the Romanian Black Sea: Insights into Food-Web Structure

View Full Paper
CTCristina TabarceaEBElena BisinicuGHGeorge-Emanuel Harcota

Key Points

  • This study aims to explore how environmental factors shape multi-trophic interactions in Black Sea coastal ecosystems.
  • Conducted multi-trophic analysis across various coastal stations
  • Integrated data from phytoplankton, microzooplankton, mesozooplankton, and ichthyoplankton
  • Performed principal component analysis to assess environmental gradients
  • Utilized fuzzy cognitive mapping to analyze ecosystem dynamics
  • Northern sector showed nutrient enrichment, leading to phytoplankton and microzooplankton peaks
  • Southern sector exhibited more saline conditions, affecting trophic coupling dynamics
  • Macrozooplankton aligned with salinity and silicate rather than nutrient levels
  • Phytoplankton was identified as the main driver of the food web, with mesozooplankton mediating interactions
  • Negative macrozooplankton effects suggest significant biological regulation in food web dynamics

Abstract

This study investigates how environmental gradients shape the structure and interactions of coastal biotic assemblages in the Romanian Black Sea. A multi-trophic analysis was conducted across a network of stations in June 2023, integrating phytoplankton, microzooplankton, mesozooplankton, macrozooplankton, ichthyoplankton, and macrozoobenthos with key physico-chemical parameters. Principal component analysis revealed strong north–south contrasts: the northern sector was characterized by nutrient enrichment (nitrate, ammonium, and silicate) supporting phytoplankton blooms and microzooplankton peaks, while the southern sector showed more saline conditions and extended trophic coupling from phytoplankton through mesozooplankton to ichthyoplankton. The central sector appeared transitional, with community structure more closely related to oxygen and phosphate levels. In the north and south, plankton dynamics were strongly linked to nutrient availability, while macrozooplankton consistently aligned with salinity and silicate, reflecting their preference for more marine waters and partial decoupling from nutrient-driven pathways. Fuzzy Cognitive Map analysis indicated combined bottom-up and top-down control, with phytoplankton supporting mesozooplankton and macrozooplankton exerting strong negative pressure. Phytoplankton functioned as the main network driver, with mesozooplankton as the central mediator, and the persistent negative macrozooplankton effect suggests direct biological regulation beyond salinity influence. These findings highlight the dual structuring of Black Sea food webs and provide an integrative, multi-trophic baseline for ecosystem-based management and Marine Strategy Framework Directive Descriptor 4 (Food webs) implementation.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Tabarcea et al. (2026) studied this question.

synapsesocial.com/papers/69e1cf1b5cdc762e9d858009https://doi.org/10.3390/jmse14080730
Ask AI
Helpful
Bookmark
Share
View Full Paper