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日本水稻增产因素分析与稻作技术评价 被引量:7
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作者 林兴军 林贤青 takeshi horie 《中国稻米》 2006年第3期57-58,共2页
文章分析了日本水稻产量增长的原因,认为提早播种和机械化程度高是日本水稻产量提高的最主要因素,是通过改善作物和资源管理水平来实现的。并对日本稻作技术进行了总结。
关键词 增产因素 稻作技术 水稻 日本 机械化
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Adaptability of High-Yielding Rice Cultivars in Relation to Biomass Productivity under Moderately Water Stressed Upland Conditions
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作者 Tomohiro Hyoda Koki Homma +2 位作者 Tatsuhiko Shiraiwa Keisuke Katsura takeshi horie 《Agricultural Sciences》 2015年第3期352-364,共13页
Recent studies have focused on the improvement of rice productivity under aerobic conditions for times when water resources and food production are limited. This study aimed to evaluate the adaptability of high-yieldi... Recent studies have focused on the improvement of rice productivity under aerobic conditions for times when water resources and food production are limited. This study aimed to evaluate the adaptability of high-yielding rice cultivars to moderately water-stressed upland conditions in order to contribute breeding. A three-year field experiment in the temperate climate of Kyoto, Japan, indicated that the decrease in yield was mainly derived from a decrease in above-ground total dry matter (TDM) rather than a decrease in harvest index (HI). Although the decrease in TDM was mostly caused by a decrease in radiation use efficiency (RUE), we determined that the key to adapting high-yielding cultivars to upland conditions is intercepted radiation per day (IRPD), governed by leaf area index (LAI). Although the effect was not robust, LAI growth under upland conditions was associated with root length density. RUE was dependent on leaf water potential (LWP), indicating that a plant’s ability to maintain LWP under water-stressed conditions is important. The results also suggest the necessity of a canopy analyzer to evaluate LAI, as well as an infrared radiation thermometer to evaluate RUE. Performing such measurements during breeding efforts allows us to select for genotypes that are suitable for less stressed aerobic conditions. 展开更多
关键词 Intercepted RADIATION RADIATION Use Efficiency Root Length Density Leaf Water Potential Temperature Difference between CANOPY and Air
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