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首页> 外文期刊>Animal Production Science >Effect of sowing time and nitrogen on rice cultivars of differing growth duration in New South Wales. 1. Yield and yield components
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Effect of sowing time and nitrogen on rice cultivars of differing growth duration in New South Wales. 1. Yield and yield components

机译:播种时间和氮素对新南威尔士州不同生育期水稻品种的影响。 1.产量和产量构成

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摘要

New South Wales rice crops commonly take >180 days from sowing to harvest, and a reduction in crop duration is sought to increase the efficiency of rice production. The response of rice cultivars of differing growth duration to sowing time and N application was examined across 2 growing seasons. The highest yields were obtained at early sowing dates in each season. In season 2, the maximum yield of the short-duration cultivar M101 was not significantly different to the long-duration cultivars Calrose, Pelde, and M7, with yields >12 t/ha. However, yield of cv. M101 was significantly less than the long-duration cultivars at an early sowing date in season 1. Analysis of yield components did not clearly indicate the reason for reduced yield of the short duration cultivar. Damage by birds and mice before harvest, exacerbated by early maturity, is a possible cause.Later sowing reduced yields of all cultivars, with the short-duration cultivar-least affected. Optimum N application decreased with delay in sowing. At early sowings there was a positive yield response to increasing N, whereas at the latest sowings in each season the N response was negative for all cultivars. Where the yield response to applied N was positive, the yield component most associated with yield was the number of florets per unit area (r = 0.55). Where the yield response was negative, yield reductions were primarily caused by a reduction in the proportion of filled grains (r = 0.83). Minimum temperatures during the reproductive stage of each cultivar explained only a small amount of the variation in percentage of filled grain. Low minimum temperatures during the reproductive stage were not the sole cause of the reduction in proportion of filled grains of late-sown, high-N plots. The high yield potential of short-duration cultivars in The high yield potential of short-duration cultivars in the New South Wales rice-growing area is clearly demonstrated, as is the value of such cultivars where late sowing is unavoidable.
机译:从播种到收获,新南威尔士州的水稻作物通常需要180天以上的时间,因此寻求缩短作物持续时间以提高水稻生产效率。在两个生长季节中,研究了不同生长期的水稻品种对播种时间和氮肥的响应。在每个季节的早期播种期获得最高产量。在第2季中,短期栽培品种M101的最大产量与长期栽培品种Calrose,Pelde和M7的最大产量没有显着差异,产量> 12 t / ha。但是,简历的产量。在第1季的早期播种期,M101明显低于长期栽培的品种。对产量成分的分析并未明确表明短期栽培品种产量下降的原因。早期收获会加剧鸟类和小鼠的伤害,这可能是早熟加剧的原因。后期播种降低了所有品种的产量,对短期品种影响最小。最佳氮肥施用量随播种延迟而降低。早期播种对氮增加有积极的产量反应,而在每个季节的最新播种中,所有品种的氮反应均为阴性。在施用氮素的产量响应为正的情况下,与产量最相关的产量成分是每单位面积的小花数量(r = 0.55)。在产量响应为负的情况下,产量下降的主要原因是填充谷物的比例减少(r = 0.83)。每个品种繁殖期的最低温度仅解释了填充谷物百分比的少量变化。生育期最低最低温度并不是造成后期播种的高氮地块填充谷物比例减少的唯一原因。在新南威尔士州水稻种植区,短期栽培品种的高产量潜力得到了明确证明,在不可避免的后期播种中,此类栽培品种的价值也得到了明确证明。

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    《Animal Production Science》 |1994年第7期|p.933-938|共6页
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