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Effects of increased ammonia on root/shoot ratio, grain yield and nitrogen use efficiency of two wheat varieties with various N supply

机译:氨水增加对不同氮素供应两个小麦品种根冠比,籽粒产量和氮素利用效率的影响

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The effects of elevated atmospheric NH3 on growth and yield parameters of two winter wheat varieties, the high water and fertilizer-demanding variety Xiaoyan 6 (XY6) and the drought-resistant variety Changhan 58 (CH58), grown with two levels of N fertilization, were studied in Open-Top Chambers. The results showed that in combination with the high N treatment increasing the atmospheric NH3 concentration to 1000 nl/l from the ambient level of 10 nl/l NH3 significantly (P < 0.05) reduced the biomass and the root/shoot ratios of the plants, especially in XY6 plants, mainly because it negatively influenced root biomass production at anthesis and mature stages. In addition, the grain yield of XY6 was by 1.51% higher, while that of CH58 was 13.2% lower, following exposure to the elevated atmospheric NH3 concentration rather than the ambient concentration in combination with the high N treatment. In contrast, in combination with the low N treatment, elevated atmospheric NH3 had significantly and non-significantly positive effects on the grain yield of XY6 and CH58 plants, respectively. The Nitrogen Use Efficiency (NUE) and related parameters were all lower in plants of both varieties exposed to the high atmospheric NH3 concentration together with either the high or low N treatment.
机译:大气中NH3含量升高对两个氮肥水平较高的两个冬小麦品种,高水和高肥料需求品种小yan 6(XY6)和抗旱品种昌汉58(CH58)的生长和产量参数的影响,在开放式房间中研究。结果表明,与高氮处理相结合,将大气中的NH3浓度从周围环境的10 nl / l NH3增加到1000 nl / l,显着(P <0.05)降低了植物的生物量和根/茎比,尤其是在XY6植物中,主要是因为它在花期和成熟期对根系生物量的生产产生负面影响。此外,在暴露于升高的大气NH3浓度而不是与高氮处理相结合的环境浓度后,XY6的籽粒产率提高了1.51%,而CH58的籽粒产率降低了13.2%。相反,与低氮处理相结合,升高的大气NH3分别对XY6和CH58植物的籽粒产量产生了显着和非显着的正向影响。在暴露于高大气NH3浓度以及高氮或低氮处理的两个品种的植物中,氮利用效率(NUE)和相关参数均较低。

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