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◆ Nature Communications2026-05-19· Demise

Algal Betaine Triggers Bacterial Hydrogen Peroxide Production that Promotes Algal Demise

Delia A. Narváez‐Barragán, Lilach Yuda, Dayana Yahalomi, Valeria Lipsman, Sergey Malitsky, Einat Segev

原始摘要(英文原文)· Original abstract
ABSTRACT Hydrogen peroxide (H 2 O 2 ) plays various roles in the ocean, acting as a signaling molecule at low concentrations and causing oxidative stress when accumulated. While many marine microbes produce H 2 O 2 , its role in microbial interactions remains unclear. Here, we used transcriptomics, genetics, and metabolomics to study H 2 O 2 dynamics in the interaction between Emiliania huxleyi algae and Phaeobacter inhibens bacteria. We found that H 2 O 2 levels rise during algal death and that bacterial H 2 O 2 production triggers this demise. Manipulating H 2 O 2 levels shifted the outcome of the interaction. We also uncovered a link between H 2 O 2 and betaine metabolism: aging algae release betaine, which promotes bacterial H 2 O 2 production and, in turn, accelerates algal death. Genes involved in H 2 O 2 and betaine metabolism were upregulated in environmental samples from an algal bloom. Together, our findings identify H 2 O 2 and betaine as key molecules that modulate algal-bacterial interactions, potentially impacting microbial dynamics in marine ecosystems.
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Algal Betaine Triggers Bacterial Hydrogen Peroxide Production that Promotes Algal Demise — 科研速览 Science Skim