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September 5, 2025Nature Communications32 citationsOpen Access

How climate change and deforestation interact in the transformation of the Amazon rainforest

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MFMarco A. FrancoLRLuciana V. RizzoMTMárcio Teixeira

Key Points

  • Deforestation has caused about 74% of the decline in dry season precipitation over 35 years, worsening climate impacts.
  • Atmospheric methane and carbon dioxide increase is mainly driven by global emissions, accounting for over 99% of rise.
  • Analysis utilized parametric statistical models on data from 29 areas in the Brazilian Legal Amazon from 1985 to 2020.
  • Understanding these interactions is essential for effective mitigation and adaptation strategies in the Amazon ecosystem.

Abstract

The Amazon rainforest is one of Earth's most diverse ecosystems, playing a key role in maintaining regional and global climate stability. However, recent changes in land use, vegetation, and the climate have disrupted biosphere-atmosphere interactions, leading to significant alterations in the water, energy, and carbon cycles. These disturbances have far-reaching consequences for the entire Earth system. Here, we quantify the relative contributions of deforestation and global climate change to observed shifts in key Amazonian climate parameters. We analyzed long-term atmospheric and land cover change data across 29 areas in the Brazilian Legal Amazon from 1985 to 2020, using parametric statistical models to disentangle the effects of forest loss and alterations of temperature, precipitation, and greenhouse gas mixing ratios. While the rise in atmospheric methane (CH4) and carbon dioxide (CO2) mixing ratios is primarily driven by global emissions (>99%), deforestation has significantly increased surface air temperatures and reduced precipitation during the Amazonian dry season. Over the past 35 years, deforestation has accounted for approximately 74% of the ~ 21 mm dry season−1 decline and 16.5% of the 2°C rise in maximum surface air temperature. Understanding the interplay between global climate change and deforestation is essential for developing effective mitigation and adaptation strategies to preserve this vital ecosystem. In this study, the distinct impacts of deforestation and global climate change on the Brazilian Amazon are quantified for the period 1985-2020. Deforestation amplifies the temperature increase and dominates the decrease in rainfall in the dry season.

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Cite This Study

Franco et al. (2025) studied this question.

synapsesocial.com/papers/68bb5f586d6d5674bcd037e5https://doi.org/10.1038/s41467-025-63156-0
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