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Sun-induced chlorophyll fluorescence is more strongly related to absorbed light than to photosynthesis at half-hourly resolution in a rice paddy.

Authors :
Yang, Kaige
Ryu, Youngryel
Dechant, Benjamin
Berry, Joseph A.
Hwang, Yorum
Jiang, Chongya
Kang, Minseok
Kim, Jongmin
Kimm, Hyungsuk
Kornfeld, Ari
Yang, Xi
Source :
Remote Sensing of Environment. Oct2018, Vol. 216, p658-673. 16p.
Publication Year :
2018

Abstract

Sun-induced chlorophyll fluorescence (SiF) is increasingly used as a proxy for vegetation canopy photosynthesis. While ground-based, airborne, and satellite observations have demonstrated a strong linear relationship between SiF and gross primary production (GPP) at seasonal scales, their relationships at high temporal resolution across diurnal to seasonal scales remain unclear. In this study, far-red canopy SiF, GPP, and absorbed photosynthetically active radiation (APAR) were continuously monitored using automated spectral systems and an eddy flux tower over an entire growing season in a rice paddy. At half-hourly resolution, strong linear relationships between SiF and GPP (R 2  = 0.76) and APAR and GPP (R 2  = 0.76) for the whole growing season were observed. We found that relative humidity, diffuse PAR fraction, and growth stage influenced the relationships between SiF and GPP, and APAR and GPP, and incorporating those factors into multiple regression analysis led to improvements up to R 2  = 0.83 and R 2  = 0.88, respectively. Relationships between LUE p (=GPP/APAR) and LUE f (=SiF/APAR) were inconsistent at half-hourly and weak at daily resolutions (R 2  = 0.24). Both at diurnal and seasonal time scales with half-hourly resolution, we found considerably stronger linear relationships between SiF and APAR than between either SiF and GPP or APAR and GPP. Overall, our results indicate that for subdiurnal temporal resolution, canopy SiF in the rice paddy is above all a very good proxy for APAR at diurnal and seasonal time scales and that therefore SiF-based GPP estimation needs to take into account relevant environmental information to model LUE p . These findings can help develop mechanistic links between canopy SiF and GPP across multiple temporal scales. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00344257
Volume :
216
Database :
Academic Search Index
Journal :
Remote Sensing of Environment
Publication Type :
Academic Journal
Accession number :
131429452
Full Text :
https://doi.org/10.1016/j.rse.2018.07.008