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◆ Global Change Biology2026-03-01· Diel vertical migration

Widespread Higher Soil Respiration Rates at Nighttime Than Daytime Across Global Forest Ecosystems

Heng Huang, Jinyun Tang, Ben Bond‐Lamberty, Peter B. Reich, Thomas W. Crowther, Jinshi Jian, Kun Zhang, Lingli Liu, Jue Wu

原始摘要(英文原文)· Original abstract
ABSTRACT Soil respiration ( R s ) is the second largest terrestrial carbon flux and therefore its temporal dynamics exert a significant influence on the soil carbon budget. While the seasonal and annual dynamics of R s and its temperature sensitivity have been well documented, the diel R s dynamics remain poorly understood. Earth system models (ESMs) typically assume a constant temperature response of R s over the diel cycle, thereby predicting lower R s at night than during the warmer daytime. Here, by analyzing extensive in situ R s datasets from 36 global forest sites, we reveal an unexpectedly widespread pattern of higher nighttime than daytime R s , which is likely driven by the hourly temporal lag between recent photosynthetic assimilation and R s associated with the transportation of recent photosynthates to the roots. Moreover, applying daytime R s ‐temperature relationships systematically underestimates nighttime R s by 2.5% to 28.7% across 31 sites, due to the significant diel difference in the temperature response of R s . However, ESMs predict lower R s at night than during the day, largely resulting from the significant underestimation of nighttime root respiration dynamics. Our findings demonstrate significant diel R s patterns across forest ecosystems, suggesting that daytime and nighttime R s may respond distinctly to future climatic changes. Incorporating these diel dynamics is essential for improving predictions of terrestrial carbon‐climate feedbacks under global warming.
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