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Responses in reef-building corals to wildfire emissions: Heterotrophic plasticity and calcification

delete2024-04-01
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PRE
AI
B
Bo Qin
余克服 cover
余克服 (Kefu Yu)
Y
Yichen Fu
Y
Yu Zhou
Y
Yanliu Wu
W
Wenqian Zhang
C
Chen, Xiaoyan *
DOI:10.1016/j.scitotenv.2024.171271delete
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Abstract

Abstract

En 中文
Extreme wildfire events are on the rise globally, and although substantial wildfire emissions may find their way into the ocean, their impact on coral reefs remains uncertain. In a five-week laboratory experiment, we observed a significant reduction in photosynthesis in coral symbionts (Porites lutea) when exposed to fine particulate matter (PM2.5) from wildfires. At low PM2.5 level (2 mg L-1), the changes in 813C and 815N values in the host and symbiotic algae suggest reduced autotrophy and the utilization of wildfire particulates as a source of heterotrophic nutrients. This adaptive strategy, characterized by an increase in heterotrophy, sustained some aspects of coral growth (total biomass, proteins and lipids) under wildfire stress. Nevertheless, at high PM2.5 level (5 mg L-1), both autotrophy and heterotrophy significantly decreased, resulting in an imbalanced coral-algal nutritional relationship. These changes were related to light attenuation in seawater and particulate accumulation on the coral surface during PM2.5 deposition, ultimately rendering the coral growth unsustainable. Further, the calcification rates decreased by 1.5 to 1.85 times under both low and high levels of PM2.5, primarily affected by photosynthetic autotrophy rather than heterotrophy. Our study highlights a constrained heterotrophic plasticity of corals under wildfire stress. This limitation may restrict wildfire emissions as an alternative nutrient source support coral growth and calcification, especially when oceanic food availability or autotrophy declines, as seen during bleaching induced by the warming ocean.
Keywords:
Wildfire PM 2.5
Photoautotrophy
Heterotrophic plasticity
Stable isotopes
Symbiodiniaceae
Coral calcification

Journal

Science of The Total Environment cover
Science of The Total Environment
IF:
8
Papers:
7.1W
Citations:
46.4W

Organization

G
guangxi university
Scholars:
3.2W
Papers: 1.8W
Citations: 25