TY - JOUR
T1 - Canopy temperature on clear and cloudy days can be used to estimate varietal differences in stomatal conductance in rice
AU - Takai, Toshiyuki
AU - Yano, Masahiro
AU - Yamamoto, Toshio
N1 - Funding Information:
We thank the technical staff of the NIAS for support with field management. Seeds of the TUAT lines were kindly provided by Prof. Hirasawa and Dr. Ookawa (Tokyo University of Agriculture and Technology). This work was supported by a grant from the Ministry of Agriculture, Forestry and Fisheries of Japan (Genomics for Agricultural Innovation, QTL1002 ).
PY - 2010/1/20
Y1 - 2010/1/20
N2 - Leaf photosynthetic potential, a major determinant of yield potential in rice, is mostly explained by stomatal conductance (gs) as well as leaf N content (Rubisco protein content). Therefore, the rapid and precise evaluation of gs as well as leaf N content would be a valuable addition to rice breeding programs aimed at improved yield potential. We established a simple method based on infrared thermography to estimate varietal differences in gs. Seven rice varieties were cultivated in two-row plots in 2007, and canopy temperatures in three varieties, including a control variety, Koshihikari, were simultaneously measured to determine canopy temperature difference (CTd) between Koshihikari and the other varieties on clear days. The varieties Takanari, Habataki, and TUAT1-5-6a displayed significantly (P < 0.05) lower leaf temperature and higher gs and leaf photosynthetic rate (Pn) than Koshihikari. CTd was closely correlated with gs and Pn. These results indicate that CTd may be useful as a relative index to estimate varietal differences in gs. A significant CTd was still observed even under cloudy conditions in 2008. Takanari and TUAT1-5-6a had lower leaf temperature than Koshihikari on cloudy days as well as on clear days. Subsequent investigation of photosynthetic light response curves revealed that Takanari and TUAT1-5-6a had higher gs and Pn than Koshihikari under lower irradiance. These results suggest that infrared thermography may be a simple method of evaluating varietal differences in gs through CTd, and that it may be practicable even under cloudy conditions.
AB - Leaf photosynthetic potential, a major determinant of yield potential in rice, is mostly explained by stomatal conductance (gs) as well as leaf N content (Rubisco protein content). Therefore, the rapid and precise evaluation of gs as well as leaf N content would be a valuable addition to rice breeding programs aimed at improved yield potential. We established a simple method based on infrared thermography to estimate varietal differences in gs. Seven rice varieties were cultivated in two-row plots in 2007, and canopy temperatures in three varieties, including a control variety, Koshihikari, were simultaneously measured to determine canopy temperature difference (CTd) between Koshihikari and the other varieties on clear days. The varieties Takanari, Habataki, and TUAT1-5-6a displayed significantly (P < 0.05) lower leaf temperature and higher gs and leaf photosynthetic rate (Pn) than Koshihikari. CTd was closely correlated with gs and Pn. These results indicate that CTd may be useful as a relative index to estimate varietal differences in gs. A significant CTd was still observed even under cloudy conditions in 2008. Takanari and TUAT1-5-6a had lower leaf temperature than Koshihikari on cloudy days as well as on clear days. Subsequent investigation of photosynthetic light response curves revealed that Takanari and TUAT1-5-6a had higher gs and Pn than Koshihikari under lower irradiance. These results suggest that infrared thermography may be a simple method of evaluating varietal differences in gs through CTd, and that it may be practicable even under cloudy conditions.
KW - Canopy temperature difference (CTd)
KW - Infrared thermography
KW - Photosynthesis
KW - Rice
KW - Stomatal conductance (g)
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U2 - 10.1016/j.fcr.2009.10.019
DO - 10.1016/j.fcr.2009.10.019
M3 - Article
AN - SCOPUS:71849102107
SN - 0378-4290
VL - 115
SP - 165
EP - 170
JO - Field Crops Research
JF - Field Crops Research
IS - 2
ER -