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Contrasting geochemical and fungal controls on decomposition of lignin and soil carbon at continental scale. | LitMetric

AI Article Synopsis

  • Lignin, a complex plant polymer, influences litter decomposition rates but doesn't always majorly affect soil organic carbon (SOC) levels, indicating a need to consider different soil characteristics.
  • Research across various North American soils shows that lignin decomposition varies significantly and is closely tied to litter decomposition, while SOC decomposition is affected differently.
  • Factors like climate legacy and metal presence play critical roles in lignin decomposition, while SOC decomposition is less influenced by these factors, suggesting that lignin's role in SOC dynamics can differ across ecosystems.

Article Abstract

Lignin is an abundant and complex plant polymer that may limit litter decomposition, yet lignin is sometimes a minor constituent of soil organic carbon (SOC). Accounting for diversity in soil characteristics might reconcile this apparent contradiction. Tracking decomposition of a lignin/litter mixture and SOC across different North American mineral soils using lab and field incubations, here we show that cumulative lignin decomposition varies 18-fold among soils and is strongly correlated with bulk litter decomposition, but not SOC decomposition. Climate legacy predicts decomposition in the lab, and impacts of nitrogen availability are minor compared with geochemical and microbial properties. Lignin decomposition increases with some metals and fungal taxa, whereas SOC decomposition decreases with metals and is weakly related with fungi. Decoupling of lignin and SOC decomposition and their contrasting biogeochemical drivers indicate that lignin is not necessarily a bottleneck for SOC decomposition and can explain variable contributions of lignin to SOC among ecosystems.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10115774PMC
http://dx.doi.org/10.1038/s41467-023-37862-6DOI Listing

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