Physiological dynamics dominate the relationship between solar-induced chlorophyll fluorescence and gross primary productivity along the nitrogen gradient in cropland

Solar-induced chlorophyll fluorescence (SIF) has been found to be robustly correlated with gross primary productivity (GPP) based on satellite datasets. However, it is unclear whether nitrogen affects the relationship between SIF and GPP at the canopy scale. Here, seasonal dynamics of SIF, GPP, vege...

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Veröffentlicht in:The Science of the total environment 2024-06, Vol.929, p.172725-172725, Article 172725
Hauptverfasser: Xu, Enxiang, Zhou, Lei, Ding, Jianxi, Zhao, Ning, Zeng, Linhui, Zhang, Guoping, Chi, Yonggang
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Sprache:eng
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Zusammenfassung:Solar-induced chlorophyll fluorescence (SIF) has been found to be robustly correlated with gross primary productivity (GPP) based on satellite datasets. However, it is unclear whether nitrogen affects the relationship between SIF and GPP at the canopy scale. Here, seasonal dynamics of SIF, GPP, vegetation physiology and canopy structure were measured synchronously throughout growing season along the nitrogen gradient in a rice paddy of China's subtropical region. Our results found that the slope of SIF against GPP was not constant, showing an increasing trend from low to high nitrogen levels. The sensitivity of SIF to nitrogen was larger than that of GPP. Nitrogen enrichment versus deficiency had asymmetrical effects on the SIF-GPP relationship. The steeper slope of SIF against GPP under high nitrogen level was mainly attributed to the promotion of canopy fluorescence efficiency (ΦF) rather than the variation of canopy fluorescence escape probability (Fesc). These results emphasize the vital role of nitrogen in exploring mechanisms underlying SIF dynamics and decoding GPP from SIF. [Display omitted] •Nitrogen enrichment versus deficiency affects SIF - GPP relationship asymmetrically.•SIF exhibits a larger increase magnitude than GPP due to the nitrogen enrichment.•Fluorescence efficiency dominates SIF response to GPP along the nitrogen gradient.
ISSN:0048-9697
1879-1026
DOI:10.1016/j.scitotenv.2024.172725