AI Article Synopsis

  • Natural ecosystems capture significant carbon by using biological diversity to create durable structures, like tree bark and roots.
  • Current carbon sequestration models often overlook how important biodiversity is for effective carbon storage, leading to potential inaccuracies in projections.
  • The loss of plant diversity due to climate and land use changes could result in significant carbon losses, reinforcing a cycle that worsens climate change, while conserving biodiversity can aid in mitigating its effects.

Article Abstract

Natural ecosystems store large amounts of carbon globally, as organisms absorb carbon from the atmosphere to build large, long-lasting, or slow-decaying structures such as tree bark or root systems. An ecosystem's carbon sequestration potential is tightly linked to its biological diversity. Yet when considering future projections, many carbon sequestration models fail to account for the role biodiversity plays in carbon storage. Here, we assess the consequences of plant biodiversity loss for carbon storage under multiple climate and land-use change scenarios. We link a macroecological model projecting changes in vascular plant richness under different scenarios with empirical data on relationships between biodiversity and biomass. We find that biodiversity declines from climate and land use change could lead to a global loss of between 7.44-103.14 PgC (global sustainability scenario) and 10.87-145.95 PgC (fossil-fueled development scenario). This indicates a self-reinforcing feedback loop, where higher levels of climate change lead to greater biodiversity loss, which in turn leads to greater carbon emissions and ultimately more climate change. Conversely, biodiversity conservation and restoration can help achieve climate change mitigation goals.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11111688PMC
http://dx.doi.org/10.1038/s41467-024-47872-7DOI Listing

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