Metal-induced stress in survivor plants following the end-Permian collapse of land ecosystems

Author:

Chu Daoliang1,Dal Corso Jacopo1,Shu Wenchao1,Haijun Song1,Wignall Paul B.,2,Grasby Stephen E.3,van de Schootbrugge Bas4,Zong Keqing5,Wu Yuyang1,Tong Jinnan1

Affiliation:

1. State Key Laboratory of Biogeology and Environmental Geology, School of Earth Sciences, China University of Geosciences, Wuhan 430074, China

2. School of Earth and Environment, University of Leeds, Leeds LS2 9JT, UK

3. Geological Survey of Canada, Natural Resources Canada, Calgary, Alberta T2L2A7, Canada

4. Department of Earth Sciences, Utrecht University, Utrecht 3584 CB, Netherlands

5. School of Earth Sciences, State Key Laboratory of Geological Processes and Mineral Resources, China University of Geosciences, Wuhan 430074, China

Abstract

Teratological spores and pollen are widespread in sediments that record the Permian- Triassic mass extinction. The malformations are thought to be the result of extreme environmental conditions at that time, but the mutagenic agents and the precise timing of the events remain unclear. We examined the abundance of teratological sporomorphs and metal concentrations in a Permian-Triassic tropical peatland succession of southwestern China. We find a significant peak of spore tetrads of lycopsid plants (as much as 19% of all sporomorphs) coeval with increases in Cu and Hg concentrations above the main terrestrial extinction interval, which marks the loss of Permian Gigantopteris forests, increased wildfire activity, and the disappearance of coal beds. Thus, in tropical peatlands, mutagenesis affected only surviving plants. Mutagenesis was likely caused by metal toxicity, linked to increased Hg and Cu loading, but was not itself a direct cause of the terrestrial crisis.

Publisher

Geological Society of America

Subject

Geology

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