首页> 外文期刊>Korean Journal of Crop Science >Study of Nutrient Uptake and Physiological Characteristics of Rice by 15~N and Purified Si Fertilization Level in a Transplanted Pot Experiment
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Study of Nutrient Uptake and Physiological Characteristics of Rice by 15~N and Purified Si Fertilization Level in a Transplanted Pot Experiment

机译:移栽试验研究15〜N和纯化硅施肥水平对水稻养分吸收和生理特性的影响。

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A pot experiment was conducted for two years to evaluate the effects of purified Si fertilization combined with N on the nutrient uptake, plant growth characteristics, and photosynthetic characteristics of rice in water melon cultivated soil. In 2002,plant height was positively affected at 25 DAT (Day After Transplanting) by Si fertilization in 100%N treatment. However, in 2003, plant height at 25 DAT was negatively affected by Si fertilization in low N level but it was reversed in high N level withinitial increase of plant height. Tiller number per pot was positively affected by N and Si fertilization level, especially for high N fertilized treatment. Leaf color was positively affected by Si fertilization in no N fertilized pots, however, Si wasnot effected in 50%N and 100%N fertilized treatments. N harvest index (NHI) increased with increased Si fertilization in no N plots, however it decreased with increasing of N fertilization level. Nitrogen use efficiency (NUE) decreased with increasing offertilized N but Si fertilization increased NUE in 50%N plots, however, it was not different by the Si fertilization level in 100%N plots. In 50%N+200%Si plots, NUE was greatest with 130 and shoot N content was 16.2 g-N/m2. N content (g/m2) in rice plant increased with increasing Si fertilization in no N plots at panicle initiation stage, 50 and 100%N plots at heading stage and all N treatment at harvesting time. This was mostly more efficient in late growth stage than early growth stage. The concentration (%) of P and K increased with increasing N fertilization level at heading and harvesting but it was not significantly different by the Si fertilization treatment except a little decreasing with increasing Si fertilization level at heading. Potassiumcontent was also not significantly related with N fertilization level except increasing with Si fertilization level at panicle initiation stage. Plant Ca content (%) decreased with increasing of Si fertilization at heading stage and Si fertilization increased Ca content at panicle initiation stage and heading stage and it increased with increasing of Si fertilization level. Photosynthetic activity was not directly related with Si fertilization amount, however, Fluorescent factors, Fv'/Fm' and PsII, were positively affected by Si fertilization level. In conclusion, N fertilization in Si 200% fertilized condition should be reduced by about 50% level of recommended N fertilization for rice cropping in green-house water-melon cultivated paddy field. However, improvement of Ps by Si fertilization could not be attributed to Ps activity in the same leaf area but because of increased total leaf area per pot improved fluorescent characteristics.
机译:进行了两年的盆栽试验,以评估纯硅施肥与氮结合对西瓜栽培土壤中水稻养分吸收,植物生长特性和光合特性的影响。 2002年,在100%N处理下,施肥在25 DAT(移栽后的第二天)对株高产生了积极影响。然而,在2003年,低氮水平的硅肥对25 DAT的株高有负面影响,但在高氮水平上,在植株高度最初增加的情况下,其高位相反。氮和硅的施肥水平对每盆分iller数有积极影响,特别是高氮肥处理。在没有施氮的盆中,施Si对叶片的颜色有积极的影响,但是在50%N和100%N的施肥条件下,Si却没有受到影响。在没有氮肥田中,氮素收获指数(NHI)随硅肥的增加而增加,但随着氮肥水平的提高而降低。氮素利用效率(NUE)随施氮量的增加而降低,但硅肥在50%N地块中的NUE增加,但是,氮肥利用率在100%N地块中的Si施肥水平没有差异。在50%N + 200%Si样区中,NUE最大,为130,而芽N含量为16.2 g-N / m2。水稻种植中的氮含量(g / m2)随穗施用初期无氮田,抽穗期无50%和100%氮田以及收获时全部氮处理的硅肥增加而增加。在成长后期,这比早期成长阶段更有效。抽穗期和收获期磷,钾的含量(%)随氮肥水平的提高而增加,但硅肥处理与磷的含量(%)无显着差异,但抽穗期随着硅肥水平的提高而有所降低。钾素的含量与氮肥水平没有显着关系,只是在穗开始阶段钾肥水平随着硅肥水平的增加而增加。在抽穗期,随着Ca施肥的增加,植物Ca含量(%)降低;在穗萌芽期和抽穗期,Ca含量增加,Ca含量随Si施肥水平的提高而增加。光合作用的活性与硅的施肥量没有直接关系,但是,荧光因子Fv'/ Fm'和PsII受硅施肥水平的正影响。总之,在温室西瓜种植的水田中,在施200%硅的条件下,氮肥的施肥量应减少推荐的施氮量的50%左右。但是,通过施硅提高Ps不能归因于相同叶面积的Ps活性,而是由于每盆总叶面积增加而改善了荧光特性。

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