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首页> 外文期刊>Agricultural Sciences >Adaptability of High-Yielding Rice Cultivars in Relation to Biomass Productivity under Moderately Water Stressed Upland Conditions
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Adaptability of High-Yielding Rice Cultivars in Relation to Biomass Productivity under Moderately Water Stressed Upland Conditions

机译:在中等水分胁迫下旱作条件下高产水稻品种对生物量生产力的适应性

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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.
机译:最近的研究集中在有氧条件下在水资源和粮食生产受到限制的时期提高稻米的生产率。本研究旨在评估高产水稻品种对中等水分胁迫的旱地条件的适应性,以促进育种。在日本京都的温带气候下进行的为期三年的野外试验表明,单产下降的主要原因是地上总干物质(TDM)下降,而不是收获指数(HI)下降。尽管TDM的下降主要是由辐射利用效率(RUE)的下降引起的,但我们确定,使高产品种适应旱地条件的关键是每天的截获辐射(IRPD),这取决于叶面积指数(LAI) 。尽管效果不明显,但在高地条件下LAI的生长与根长密度有关。 RUE依赖于叶水势(LWP),这表明植物在水分胁迫条件下维持LWP的能力很重要。结果还表明,需要使用冠层分析仪评估LAI,以及使用红外辐射温度计评估RUE。在育种过程中进行此类测量可让我们选择适合压力较小的有氧条件的基因型。

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