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A rotten-egg gas helps plants survive being flooded

Telara Y, Akter S, Flashman E, Giuntoli B

Plant Signaling

If your garden beds or a nearby farm field have ever turned into a swamp after heavy rain, this research points toward crops and plants bred to shrug off waterlogged roots instead of rotting.

When soil floods, plant roots get cut off from oxygen and start to suffocate. Researchers found that hydrogen sulfide, the same gas that gives rotten eggs their smell, acts as a signal inside plant cells that helps them cope with low oxygen by protecting their internal machinery and fine-tuning stress hormones. Understanding this could help scientists breed crops that bounce back better from floods and waterlogging.

Key Findings

1

Hydrogen sulfide (H2S) helps plants cope with low-oxygen stress by modulating antioxidant defenses, mitochondrial function, and hormonal signaling

2

H2S acts mainly through persulfidation, a chemical modification of proteins, and interacts with nitric oxide and reactive oxygen species to influence cell survival

3

H2S turnover is tied to oxygen availability and appears to be a conserved stress-response mechanism across different domains of life, not just plants

chevron_right Technical Summary

Scientists are learning how a smelly gas, hydrogen sulfide, helps plants survive flooding by protecting cells when oxygen runs low. Harnessing this natural defense could help breed crops that survive waterlogged fields as flooding becomes more common.

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Abstract Preview

Original paper

The role of H2S and its derivatives in plant responses to low O2.

Hydrogen sulfide (H2S) is a gasotransmitter molecule that regulates essential plant biological processes. In the context of climate change and increasing flooding events, its role in plant response...

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Abstract copyright held by the original publisher.

hub This connects to 9 other discoveries — plant-signaling, climate-adaptation, crop-improvement +1 more 5 related articles

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thermostat Climate Adaptation
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thermostat

Climate adaptation in plants refers to the physiological and evolutionary mechanisms through which plants adjust to changing environmental conditions, including temperature shifts, altered precipitation patterns, and seasonal variations. Understanding these processes is essential for plant science

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