Multi-layered survival strategy in diatom resting cells as seed bank for blooms: insights from Thalassiosira pseudonana
ID:12 View Protection:ATTENDEE Updated Time:2026-08-31 11:52:49 Hits:13 Oral Presentation

Start Time:2027-01-12 15:50(Asia/Shanghai)

Duration:15min

Session:S2 Session 2 - Harmful Algal Blooms in the Asia Pacific: Recent Advances in Taxonomy, Biodiversity, Ecophysiology, Rapid Detection, and Early Warning to Mitigate Impacts of Coastal Ecosystem Health and Seafood Safety » S2-3Harmful Algal Blooms in the Asia Pacific: Recent Advances in Taxonomy, Biodiversity, Ecophysiology, Rapid Detection, and Early Warning to Mitigate Impacts of Coastal Ecosystem Health and Seafood Safety

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Abstract
Diatom resting cells form sedimentary seed banks that drive algal bloom recurrence, yet the mechanisms enabling long-term survival in dark, cold deep waters remain unclear. Using multi-omics and physiology in the bloom-forming diatom Thalassiosira pseudonana, we show that resting-cell formation is triggered by decreased light and temperature, leading to storage catabolism, cytoplasmic acidification, and chloroplast remodeling. Long-term survival (up to 402 days) involves phased metabolic reconfiguration and extensive lipid remodeling: suppressed respiration/photosynthesis via cardiolipin and glycolipid shifts, increased sphingolipids/sterols/ether lipids, and reduced membrane unsaturation, which lower fluidity/permeability and limit toxic anthracene uptake. Concurrently, downregulation of the grazing stimulant DMSP and accumulation of its antioxidant derivative DMSO reduce predation and oxidative stress. Our findings reveal a multi-layered active defense, centered on membrane restructuring, that ensures cellular resilience and underpins diatom bloom dynamics, providing a mechanistic basis for understanding bloom recurrence and informing future mitigation strategies.
Key words: diatom, resting cells, long-term survival, metabolic reprogramming, stress tolerance, seed bank for blooms
Funding source: National Natural Science Foundation of China (Grant Nos. 42076115, 41576138)
 
Keywords
Speaker
Junrong Liang
Xiamen University

Submission Author
Junrong Liang Xiamen University
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Important Date
  • Conference Date

    Jan 12

    2027

    to

    Jan 15

    2027

  • Jul 21 2026

    Draft paper submission deadline

  • Jan 15 2027

    Registration deadline

Sponsored By
State Key Laboratory of Marine Environmental Science, Xiamen University (MEL)
Department of Earth Sciences, National Natural Science Foundation of China (NSFC)
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