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首页> 外文期刊>日本作物學會紀事 >Studies on the Starch Contained in the Tissues of Rice Plants : XIII. The effects of temperature with different daily range combined with photoperiod, light intensity, and air-humidity during ripening period on the alkali decomposition value and the X-ray diffraction patterns of the kernel starches
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Studies on the Starch Contained in the Tissues of Rice Plants : XIII. The effects of temperature with different daily range combined with photoperiod, light intensity, and air-humidity during ripening period on the alkali decomposition value and the X-ray diffraction patterns of the kernel starches

机译:水稻植物组织中含有淀粉的研究:XIII。在堆积期与籽粒分解值和籽粒淀粉的碱分解值和克雷雷衍射图中,温度与熟化时期的光周期,光强度和呼吸湿度相结合的影响

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The properties of rice kernel starches of Norin-17 (Japonica type) and IR-8 (Indica type) ripened from fertilization to maturity under different air temperatures combined with photoperiod, light intensity and air-humidity were compared by testing their alkali decomposition value and X-ray diffraction pattern. The alkali decomposition values of Norin-17 were always lower than those of IR-8, indicating that the former is more resistant to alkali. In the regime of this experiment, higher air-temperatures especially during daytime decreased the value. At higher temperatures longday condition seemed to decrease it. Light intensity and air-humidity had little effect on the value. Under the differential conditions tested, X-ray diffraction patterns of Norin-17 varied from type II to type III, while those of IR-8 varied from type I to III with a wider range. Norin-17 starches ripened under the lowest or the highest temperature showed type II, in cotrast, IR-8, starches was type I when matured at lower temperatures or very cool night temperatures, but showed type III when ripened at the highest temperature. At such high temperatres as 35-25 or 30-20°C, type II and type I under shortday condition changed to type III and II, respectively, under longday condition. The patterns were little affected by air-humidity, but were influenced by light intensity; type I and type II under weak light condition changed to type II and III, respective1y, under strong light. In general, alkali decomposition value and X-ray diffraction patterns varied parallel, but sometimes with discrepancy, the cause of which is not clear.
机译:通过试验其碱分解值,通过测试碱性分解值与光周期,光强度和空气湿度在不同的空气温度下成熟到成熟度的Norin-17(粳稻类型)和IR-8(籼型)的性质。 X射线衍射图案。 Norin-17的碱分解值总是低于IR-8的碱,表明前者更耐碱。在该实验的制度中,特别是在白天期间的空气温度较高。在更高的温度下,延迟状态似乎减少了它。光强度和空气湿度对价值几乎没有影响。在测试的差分条件下,Norin-17的X射线衍射图谱由II型变化至III型,而IR-8的I I型从I型变化,具有较宽的范围。在最低或最高温度下成熟的甲蛋白-17淀粉在CoTraast,IR-8中显示II型,淀粉在较低温度或非常凉爽的夜晚温度下造成时,但在最高温度下成熟时显示III型。在如35-25或30-20℃的高温下,II型和I型在短期内的III型和II型,分别在延迟状态下。这些图案受到空气湿度的影响很小,但受光强的影响;在强光下,弱光条件下的I型和II型变为II型和III,相应的1Y。通常,碱分解值和X射线衍射图案平行,但有时具有差异,其原因尚不清楚。

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