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首页> 外文期刊>Experimental agriculture >GRAIN YIELD AND NITROGEN UTILIZATION IN RESPONSE TO REDUCING NITROGEN RATE IN HYBRID RICE TRANSPLANTED AS SINGLE SEEDLINGS
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GRAIN YIELD AND NITROGEN UTILIZATION IN RESPONSE TO REDUCING NITROGEN RATE IN HYBRID RICE TRANSPLANTED AS SINGLE SEEDLINGS

机译:谷物产量和氮利用响应于降低杂交水稻中的氮速率作为单身幼苗

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摘要

Transplanting single seedlings rather than seedlings in clumps has been increasingly attractive in hybrid rice production in China due to reduced seed requirements and higher grain yield. This study was conducted to determine grain yield and nitrogen (N) utilization in response to reductions in the N rate in hybrid rice under single-seedling transplanting. Field experiments were done in 2015 and 2016 on a moderate to high fertility soil at the Experimental Farm of Hunan Agricultural University, China. The hybrid rice cultivar Liangyoupeijiu (LYPJ) was used in 2015, and two hybrid cultivars LYPJ and Xiangliangyou 900 were used the next year. In each year, the rice plants transplanted with a single seedling per hill were grown with three N rates, including the usual N rate (150 kg ha–1) and two reduced N rates (120 and 90 kg ha–1). Grain yield, yield attributes, and N uptake and use efficiency were determined for each N rate. Significant reduction in grain yield was observed in only one of three cultivar-year combinations when N rate was reduced by 20% (from 150 to 120 kg ha–1), and the magnitude of yield reduction was only 4%. Although significant reduction in grain yield was observed in two of the three cultivar-year combinations when N rate reduced by 40% (to 90 kg ha–1), the highest yield reduction was only 7%. Yield attributes were generally changed slightly when N rate was reduced by 20%, while compensation among yield attributes and N utilization characteristics could explain why a 40% reduction in N rate did not result in substantial yield loss. Partial factor productivity of applied N (PFPN) was increased by 21–24% and 56–63% with 20% and 40% reductions in the N rate, respectively. The higher PFPN with a reduced N rate was attributed to higher recovery efficiency of applied N (REN) or to both higher REN and internal N use efficiency. Our study suggests that reducing N rate does not necessarily result in yield loss due to compensation among yield components and increased N use efficiency in hybrid rice transplanted as single seedlings under moderate to high soil fertility conditions.
机译:由于种子需求降低和更高的谷物产量,在中国移植单幼苗而不是团块幼苗在中国的杂种水稻生产越来越有吸引力。进行该研究以确定在单幼苗移植下杂交水稻N速率降低的谷物产量和氮气(n)利用。现场实验于2015年和2016年在中国湖南农业大学实验农场进行了中度至高生育土壤。杂交水稻品种Liangyousijiu(Lypj)于2015年使用,第二年使用了两个杂交品种Lypj和祥莲沟900。每年,每山幼苗移植的水稻植物以三个速率生长,包括通常的N速率(150 kg HA-1),两种降低的N率(120 kg ha-1)。确定每个N速率测定谷物产量,产量属性和N吸收和使用效率。当N速率降低20%(从150至120kg HA-1)时,只有三种品种组合中的一种显着降低谷物产量的显着降低,并且产量减少的幅度仅为4%。虽然在三种品种年份组合中观察到谷物产量的显着降低,但是当N率降低40%(达到90千克HA-1)时,最高收益率仅为7%。当N速率降低20%时,产量属性通常略微发生变化,而屈服属性和N利用特征的补偿可以解释为什么N速率降低40%不会导致大量产量损失。施用N(PFPN)的部分因素生产率分别增加了21-24%,56-63%,分别以20%和40%的降低。具有降低的N速率的较高的PFPN归因于应用N(REN)的较高恢复效率或更高的REN和内部N使用效率。我们的研究表明,降低N速率并不一定导致屈服损失导致产量组分的补偿,并且在中度至高土壤肥力下作为单幼苗移植的杂交水稻中的N使用效率增加。

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