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Integrated crop management practices for maximizing grain yield of double-season rice crop

机译:综合作物管理实践,用于最大化双季稻田产量的粮食产量

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Information on maximum grain yield and its attributes are limited for double-season rice crop grown under the subtropical environment. This study was conducted to examine key characteristics associated with high yielding double-season rice crop through a comparison between an integrated crop management (ICM) and farmers’ practice (FP). Field experiments were conducted in the early and late seasons in the subtropical environment of Wuxue County, Hubei Province, China in 2013 and 2014. On average, grain yield in ICM was 13.5% higher than that in FP. A maximum grain yield of 9.40 and 10.53 t ha?1 was achieved under ICM in the early- and late-season rice, respectively. Yield improvement of double-season rice with ICM was achieved with the combined effects of increased plant density and optimized nutrient management. Yield gain of ICM resulted from a combination of increases in sink size due to more panicle number per unit area and biomass production, further supported by the increased leaf area index, leaf area duration, radiation use efficiency, crop growth rate, and total nitrogen uptake compared with FP. Further enhancement in the yield potential of double-season rice should focus on increasing crop growth rate and biomass production through improved and integrated crop management practices.
机译:有关最大谷物产量及其属性的信息有限于在亚热带环境下种植的双季稻作物。通过综合作物管理(ICM)和农民练习(FP)的比较,进行该研究以检查与高产双季稻作物相关的关键特征。在2013年和2014年,中国湖北省武苏县亚热县亚热环境的早期和晚期进行了田间实验。平均而言,ICM的粮食产量比FP高出13.5%。在早期和晚期稻米的ICM下,最大谷物产量为9.40和10.53 t ha?1。通过增加植物密度和优化营养管理的组合效应,实现了ICM双季稻米的产量改善。 ICM的产量增益是由于由于每单位面积更多的穗数和生物质生产而增加的水槽尺寸的组合,进一步支持叶面积指数,叶面积持续时间,辐射使用效率,作物生长速度和总氮气摄取与FP相比。通过改进和综合作物管理实践,双季稻米产量潜力的进一步增强应侧重于增加作物生长率和生物量产量。

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