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Updated: Sep 7, 2025

Resurrection of Dormant Daphnia magna: Protocol and Applications
Published on: January 19, 2018
Marine siliceous ecosystem decline led to sustained anomalous Early Triassic warmth
Terry T Isson1, Shuang Zhang2, Kimberly V Lau3
1Te Aka Mātuatua, University of Waikato (Tauranga), BOP, Tauranga, New Zealand. tisson@waikato.ac.nz.
Abstract:
In the wake of rapid CO2 release tied to the emplacement of the Siberian Traps, elevated temperatures were maintained for over five million years during the end-Permian biotic crisis. This protracted recovery defies our current understanding of climate regulation via the silicate weathering feedback, and hints at a fundamentally altered carbon and silica cycle. Here, we propose that the development of widespread marine anoxia and Si-rich conditions, linked to the collapse of the biological silica factory, warming, and increased weathering, was capable of trapping Earth's system within a hyperthermal by enhancing ocean-atmosphere CO2 recycling via authigenic clay formation. While solid-Earth degassing may have acted as a trigger, subsequent biotic feedbacks likely exacerbated and prolonged the environmental crisis. This refined view of the carbon-silica cycle highlights that the ecological success of siliceous organisms exerts a potentially significant influence on Earth's climate regime.
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