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首页> 外文期刊>International Journal of Agriculture, Environment and Biotechnology >Physiological Responses of Rice Cultivars to VariousNitrogen Levels
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Physiological Responses of Rice Cultivars to VariousNitrogen Levels

机译:水稻品种对不同氮水平的生理响应

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This paper is an attempt to assess the physiological responses (photosynthetic rate, Nitrate Reductase (NR) activity, leaf chlorophyll, flag leaf angle and yield traits) of rice cultivars to various nitrogen levels. Field investigations were therefore, carried out on four rice cultivars namely Vasumati, Kasturi, Tulsi and Krishna Hamsa treated with four nitrogen levels (0,50,100 and 200 kg ha~(-1)) for two years at GB.P.U. A. & T. Pantnagar (India). Genotypic variability was apparent with cv. Vasumati displaying the highest mean photosynthetic rate during flowering stage (8.1 imol C0_2 nr~(-2) s~(-1)) whereas the mean NR activities were at the peak during active tillering (0.164 imol N0_2~- g~(-1) fresh wt.h~(-1)) and flowering stages (0.125 imol N0_2 g~(-1) fresh wt.lv~(-1)). The cv. Tulsi recorded the lowest values for these traits in that order (7.34 imol imol C02 m~(-2) s~(-1),0.102 imol N02 g~(-1) fresh wt.h~(-1) and 0.088 imol N0_2~- g~(-1) fresh wt.h~(-1)). Leaf chlorophyll content (SPAD value) enhanced in response to increasing nitrogen doses with cv. Kasturi accumulating more of it (24.42). Flag leaf angle widened due to increased nitrogen applications reflecting large genotypic variations such that the cv. Krishna Hamsa exhibited the highest value of leaf angle (29.5°) and cv. Tulsi, the least (20.58°). Longest panicle and flag leaf was expressed by cv. Kasturi and Vasumati respectively. Yield related traits viz. number of panicle/m~2 and grains/ panicle was utmost decided for cv. Vasumati and Tulsi whereas least for cv. Kasturi and Vasumati respectively. The values of each trait are shown in terms of mean of two years. It is recorded that the application of excess quantity of nitrogen fertilizer might be enhanced functional traits or physiological responses. It is also suggested that this study may be used to screen nitrogen efficient rice cultivars in future to address environmental problems, energy issues and cost of production of nitrogen fertilizers, needed in huge quantities for rice cultivation.
机译:本文试图评估水稻对不同氮水平的生理响应(光合速率,硝酸还原酶(NR)活性,叶绿素,剑叶角和产量性状)。因此,对GB.P.U.处理的四个水稻品种,即Vasumati,Kasturi,Tulsi和Krishna Hamsa进行了四个氮素水平(0,50,100和200 kg ha〜(-1))的实地调查,为期两年。 A.&T. Pantnagar(印度)。基因变异在cv中很明显。 Vasumati在开花期表现出最高的平均光合速率(8.1 imol C0_2 nr〜(-2)s〜(-1)),而平均NR活性在活跃分ing期达到峰值(0.164 imol N0_2〜-g〜(-1) )(h-1(-1))和开花期(0.125 imol N0_2 g〜(-1)-1v(-1))。简历图尔西记录的这些性状的最低值依次为(7.34 imol imol CO2 m〜(-2)s〜(-1),0.102 imol N02 g〜(-1)新鲜wt.h〜(-1)和0.088 imol N0_2〜-g〜(-1)新鲜重量h〜(-1))。随着氮的增加,叶片叶绿素含量(SPAD值)增加。 Kasturi累积了更多(24.42)。由于增加的氮肥施用反映了较大的基因型变异,因此剑叶角变宽,例如cv。克里希纳·哈姆萨(Krishna Hamsa)表现出最高的叶角(29.5°)和cv值。 Tulsi,最小(20.58°)。最长的穗和旗叶由cv表达。卡斯特里和瓦苏马蒂。产量相关性状即。穗数决定了穗数/ m〜2和粒数/穗数。 Vasumati和Tulsi,而简历最少。卡斯特里和瓦苏马蒂。每个特征的值以两年的平均值表示。据记录,过量施用氮肥可能会增强功能性状或生理反应。还建议该研究将来可用于筛选氮效率高的水稻品种,以解决水稻种植所需的环境问题,能源问题和氮肥生产成本。

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