Reduced methane emissions in transgenic rice genotypes are associated with altered rhizosphere microbial hydrogen cycling

L Ling-Dong Shi M Maria Florencia Ercoli J Junhyeong Kim A Artur Teixeira de Araujo Junior K Katerina Estera-Molina (Department of Environmental Science, Policy, and Management, University of California) S Subah Soni T Tracy Satomi Weitz A Alexandra M. Shigenaga I Ilija Dukovski R Rohan Sachdeva H Halbay Turumtay K Katherine B. Louie B Benjamin P. Bowen S Suzanne M. Kosina H Henrik V. Scheller J Jennifer Pett-Ridge (Physical and Life Sciences Directorate, Lawrence Livermore National Lab) D Daniel Segrè T Trent R. Northen (Joint BioEnergy Institute) P Pamela C. Ronald (Department of Plant Pathology, University of California) J Jillian F. Banfield

Abstract

Abstract Rice paddies significantly contribute to atmospheric methane (CH 4 ). Here, we show that two independent rice genotypes overexpressing genes for PLANT PEPTIDES CONTAINING SULFATED TYROSINE ( PSY ) reduce cumulative CH 4 emissions by 38% (PSY1) and 58% (PSY2) over 70 days of growth compared with controls. Genome-resolved metatranscriptomic data from PSY rhizosphere soils reveal lower ratios of gene activities for (mostly hydrogenotrophic) CH 4 production versus consumption, decreased activity of H 2 -producing genes, and increased activity of bacterial H 2 oxidation pathways. Metabolic modeling using metagenomic and metabolomic data predicts elevated H 2 oxidation and suppressed H 2 production in the PSY rhizosphere. Assembled genomes of rhizosphere H 2 -oxidizing bacteria are enriched in genes utilizing gluconeogenic acids compared with H 2 -producing counterparts, and their activities are likely stimulated by elevated levels of gluconeogenic acids, primarily amino acids, in PSY root exudates. Overall, our study indicates that decreased CH 4 emissions are due to a lower amount of H 2 available for hydrogenotrophic methanogenesis and provides a powerful strategy to mitigate CH 4 emissions from increasingly widespread rice cultivation.

Article Details

Volume / Issue Vol. 17, Issue 1
Published January 26, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (20)

L

Ling-Dong Shi

M

Maria Florencia Ercoli

J

Junhyeong Kim

A

Artur Teixeira de Araujo Junior

K

Katerina Estera-Molina

Department of Environmental Science, Policy, and Management, University of California

S

Subah Soni

T

Tracy Satomi Weitz

A

Alexandra M. Shigenaga

I

Ilija Dukovski

R

Rohan Sachdeva

H

Halbay Turumtay

K

Katherine B. Louie

B

Benjamin P. Bowen

S

Suzanne M. Kosina

H

Henrik V. Scheller

J

Jennifer Pett-Ridge

Physical and Life Sciences Directorate, Lawrence Livermore National Lab

D

Daniel Segrè

T

Trent R. Northen

Joint BioEnergy Institute

P

Pamela C. Ronald

Department of Plant Pathology, University of California

J

Jillian F. Banfield