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