采用回归最优设计方法,研究了杂交晚粳甬优538作单季直播时播种期(X1)、播种量(X2)、尿素用量(X3)和各期施氮比例(X4)对产量等8个主要性状的作用效应。结果表明,栽培效应播种期>播种量>施氮比>尿素用量;播种期对齐穂期、结实率、产量等6个性状,播种量对最高苗数、每穂总粒数、产量等7个性状,尿素用量对分蘖数、有效穂数等4个性状,施氮比对株高、千粒重、产量等6个性状有显著影响,且因子间存在一定的互作效应。全因子模拟筛选单产≥750 kg/667 m2的优化措施:播种期6月2-5日,播种量1.25~1.41 kg/667 m2,施氮量(尿素)36.3~40.0 kg/667 m2,其中幼苗肥占28%~32%、分蘖肥占32%~28%、壮秆肥占18%~22%、穂肥(促花)占22%~18%。
Using the optimum regression design, the effects of seeding date (X1), seeding rate (X2), urea rate (X3) and nitrogen proportion in various growing stages (X4) were studied on 8 agronomic traits of japonica late hybrid rice Yongyou 538 by direct seeding. The results showed that the order of the cultivation effects was X1>X2>X4>X3. There were various significant effects of seeding date to 6 agronomic traits (full heading date, seed setting rate, yield, etc), seeding rate to 7 traits (maximum seedlings, total grains per panicle, yield, etc), urea rate to 4 traits (tillerings, effective panicles, etc) and nitrogen proportion to 6 traits (plant height, 1000-grain weight, yield, etc), and had interactions among factors. The analysis by the full factorial simulation screen indicated that in order to obtain higher rice yield ≥ 750 kg/667 m2, the optimal cultivation requirements should be adopted as follows: seeding date June 2-5, seeding rate 1.25~1.41 kg/667 m2, amount of urea 36.3~40.0 kg/667 m2, and nitrogen proportion 28%~32% in seedling stage, 32%~28% in tillering stage, 18%~22% in booting stage, and 22%~18% in flowering stage.
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