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

2024-10-07

Abstract excerpt

Rice paddies contribute substantially to atmospheric methane (CH 4 ) and these emissions are expected to increase as the need to feed the human population grows. Here, we show that two independent rice genotypes overexpressing genes for PLANT PEPTIDES CONTAINING SULFATED TYROSINE ( PSY ) reduced cumulative CH 4 emissions by 38% (PSY1) and 58% (PSY2) over the growth period compared with controls. Genome-resolve...

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Identifiers and source

Literature Corpus work
8853085a-fdbb-5ea5-8a8d-8b8ce0a86814
DOI
10.1101/2024.10.07.617079
Open publication

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Reduced methane emissions in transgenic rice genotypes are associated with altered rhizosphere microbial hydrogen cyclingDOI 10.1101/2024.10.07.617079
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