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Journal of Applied Phycology · 2026 · Vol. 38 · Issue 4 · Springer
Macroalgae are integral to marine ecosystems, contributing to primary production, biodiversity, nutrient cycling, and carbon capture. Despite their ecological and economic importance, the study of macroalgae in unique regions like the Red Sea, characterized by high temperatures, hypersalinity, and significant endemism, remains limited. Insights derived from this region offer information on resilience in the face of future clim...
Environmental Microbiology · 2026 · Vol. 28 · Issue 8 · Wiley
Earth's biodiversity is central to ecosystem health and resilience, providing essential functions and services. The Red Sea is a recognised marine biodiversity hotspot with high endemism and unique environmental conditions that support extensive but poorly resolved biodiversity. Here, we applied metagenomic analyses to sediment samples collected from coastal to deep‐sea environments during the Red Sea Decade Expedition 2022 to...
Environmental Microbiology · 2026 · Vol. 28 · Issue 2 · Wiley
Marine sediments host diverse benthic prokaryotic communities that are integral to global biogeochemical cycles. However, the spatial distribution and environmental drivers of these communities, particularly in unique environments like the Red Sea, remain largely underexplored. In this study, we examine benthic prokaryotic communities sampled during the Red Sea Decade Expedition (RSDE) using 16S rRNA gene sequencing across fiv...
Environmental Microbiology · 2025 · Vol. 27 · Issue 3 · Wiley
Pelagic particle‐associated bacterioplankton play crucial roles in marine ecosystems, influencing biogeochemical cycling and ecosystem functioning. However, their diversity, composition, and dynamics remain poorly understood, particularly in unique environments such as the Red Sea. In this study, we employed eDNA metabarcoding to comprehensively characterise bacterioplankton communities associated with pelagic particles in a t...
Frontiers in Marine Science · 2024 · Vol. 11 · Frontiers
Ocean warming reduces O 2 solubility and increases organismal O 2 demand, endangering marine life. Coastal ecosystems, however, experience O 2 supersaturation during peak daytime temperatures due to metabolic cycles. Recent discoveries show that this environmental supersaturation can reduce the vulnerability of tropical species to warming by satisfying their oxygen requirements. To test whether this also occurs within the cnid...
Frontiers in Marine Science · 2022 · Vol. 9 · Frontiers
Eutrophication-induced hypoxic sites are increasingly reported in coastal regions. At the same time, ocean warming, water column stratification, and changing circulation lead to open-ocean deoxygenation. In coastal areas and reefs with dense vegetation, aquatic organisms can be exposed to oxygen limitation stress where oxygen concentration reaches extremely low levels, particularly during nighttime once photosynthetic O 2 prod...
Frontiers in Marine Science · 2022 · Vol. 9 · Frontiers
Anthropogenic pressures have driven large-scale declines in coral cover on >50% of tropical coral reefs. Most research efforts have focused on ocean warming, ocean acidification, and overfishing impacts. Despite increasing instances of reef-associated hypoxic events, the role of reduced O 2 in affecting coral reef performance is largely unknown. Here, we assessed the hypoxic thresholds of two Red Sea coral species: Porites sp....