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Rainforest-to-pasture conversion stimulates soil methanogenesis across the Brazilian Amazon

Environmental Studies and Forestry

Rainforest-to-pasture conversion stimulates soil methanogenesis across the Brazilian Amazon

M. E. Kroeger, L. K. Meredith, et al.

Explore the fascinating dynamics of methane emissions in the Amazon rainforest! This groundbreaking research reveals how land-use changes impact methanogenic microorganisms, highlighting the resilience of secondary rainforests. Conducted by a team of researchers including Marie E. Kroeger and Laura K. Meredith, this study uncovers critical insights that could lead to strategies for restoring our planet's vital ecosystems.... show more
Abstract
The Amazon rainforest is a biodiversity hotspot and large terrestrial carbon sink threatened by agricultural conversion. Rainforest-to-pasture conversion stimulates the release of methane, a potent greenhouse gas. The biotic methane cycle is driven by microorganisms; therefore, this study focused on active methane-cycling microorganisms and their functions across land-use types. We collected intact soil cores from three land use types (primary rainforest, pasture, and secondary rainforest) of two geographically distinct areas of the Brazilian Amazon (Santarém, Pará and Ariquemes, Rondônia) and performed DNA stable-isotope probing coupled with metagenomics to identify the active methanotrophs and methanogens. At both locations, we observed a significant change in the composition of the isotope-labeled methane-cycling microbial community across land use types, specifically an increase in the abundance and diversity of active methanogens in pastures. We conclude that a significant increase in the abundance and activity of methanogens in pasture soils could drive increased soil methane emissions. Furthermore, we found that secondary rainforests had decreased methanogenic activity similar to primary rainforests, and thus a potential to recover as methane sinks, making it conceivable for forest restoration to offset greenhouse gas emissions in the tropics. These findings are critical for informing land management practices and global tropical rainforest conservation.
Publisher
The ISME Journal
Published On
Oct 20, 2020
Authors
Marie E. Kroeger, Laura K. Meredith, Kyle M. Meyer, Kevin D. Webster, Plinio Barbosa de Camargo, Leandro Fonseca de Souza, Siu Mui Tsai, Joost van Haren, Scott Saleska, Brendan J. M. Bohannan, Jorge L. Mazza Rodrigues, Erika Berenguer, Jos Barlow, Klaus Nüsslein
Tags
Amazon rainforest
methane emissions
methanogens
land-use change
biodiversity
ecosystem restoration
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