TY - JOUR
T1 - Sensitivity of wheat yield to temperature changes with regional sunlight characteristics in eastern Hokkaido
AU - Shimoda, Seiji
AU - Hamasaki, Takahiro
AU - Hirota, Tomoyoshi
AU - Kanno, Hiromitsu
AU - Nishio, Zenta
N1 - Funding Information:
This work was supported by JSPS KAKENHI Grant Numbers 24658215 (Grant-in-Aid for Challenging Exploratory Research ) and 25850015 (Grant-in-Aid for Young Scientists (B)). A part of this work was supported by Council for Science, Technology and Innovation (CSTI), Cross-ministerial Strategic Innovation Promotion Programme (SIP), ‘Technologies for creating next-generation agriculture, forestry and fisheries’ (funding agency: Bio-oriented Technology Research Advancement Institution, NARO).
Publisher Copyright:
© 2015 Royal Meteorological Society.
PY - 2015/11/30
Y1 - 2015/11/30
N2 - Air temperature and sunshine duration for agricultural fields were extracted from 1-km-resolution weather data, and their relationship with winter wheat yield was compared for the adjacent Tokachi and Okhotsk regions of eastern Hokkaido, Japan. Major climatic drivers of winter wheat yield were air temperature during spring and grain-filling period in Tokachi, and sunshine duration during grain-filling period in Okhotsk. The regional difference in the sensitivity of yield to air temperature is attributed to variations in sunshine duration during grain-filling period. In Tokachi, a shorter grain-filling period limits the cumulative sunlight available to plants, because sunshine duration declines from late June to late July. In Okhotsk, yields of winter wheat were attributed to receiving adequate sunlight, although the growth period was curtailed by higher air temperature. We found that different climatic drivers affected winter wheat yield even in adjacent regions. The sensitivity of winter wheat yield to temperature can be determined by a threshold of 4.5h daily sunshine duration regardless of region. Short sunshine duration during the grain-filling period exacerbated the sensitivity of wheat yield to temperature. Early summer in Okhotsk is characterized by sunnier weather than in Tokachi due to foehn, with respect to the southerly winds. Then, southerly wind was associated with significantly longer sunshine duration in Okhotsk. Regional cloud development affects sunshine duration as the climatic driver of wheat yield.
AB - Air temperature and sunshine duration for agricultural fields were extracted from 1-km-resolution weather data, and their relationship with winter wheat yield was compared for the adjacent Tokachi and Okhotsk regions of eastern Hokkaido, Japan. Major climatic drivers of winter wheat yield were air temperature during spring and grain-filling period in Tokachi, and sunshine duration during grain-filling period in Okhotsk. The regional difference in the sensitivity of yield to air temperature is attributed to variations in sunshine duration during grain-filling period. In Tokachi, a shorter grain-filling period limits the cumulative sunlight available to plants, because sunshine duration declines from late June to late July. In Okhotsk, yields of winter wheat were attributed to receiving adequate sunlight, although the growth period was curtailed by higher air temperature. We found that different climatic drivers affected winter wheat yield even in adjacent regions. The sensitivity of winter wheat yield to temperature can be determined by a threshold of 4.5h daily sunshine duration regardless of region. Short sunshine duration during the grain-filling period exacerbated the sensitivity of wheat yield to temperature. Early summer in Okhotsk is characterized by sunnier weather than in Tokachi due to foehn, with respect to the southerly winds. Then, southerly wind was associated with significantly longer sunshine duration in Okhotsk. Regional cloud development affects sunshine duration as the climatic driver of wheat yield.
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U2 - 10.1002/joc.4276
DO - 10.1002/joc.4276
M3 - Article
AN - SCOPUS:84957963319
SN - 0899-8418
VL - 35
SP - 4176
EP - 4185
JO - International Journal of Climatology
JF - International Journal of Climatology
IS - 14
ER -