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Effects of Changes in Source–Sink Relation in Different Planting Dates on Yield and Yield Components of Soybean Cultivars

机译:不同播种期源库关系的变化对大豆品种产量及产量构成的影响

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Split-split plots experimental design based on randomized complete block design was conducted at the Baiekola Agricultural Research Center in 2010 to study the effects of changes in source–sink on the yield and yield components of soybean cultivars planted at different dates. Factors studied in this experiment included planting date, as the main plot, at two levels (June 6, June 27), cultivars (Line 032, 033, Sari or JK, and Telar or BP), as the sub plot, and five levels (including the removal of the top, the middle, and the bottom one thirds of the leaves, removal of one third of the flowers, and the control treatment as the sub-sub plot. Results of analysis of variation showed that the various cultivars were significantly different in all the studied traits at (P<0.01) probability level. Seed yield at the first planting date (184.03 g. m -2 ) was 11.18% lower than that at the second planting date (163.45 g.m -2 ). The highest seed yield was obtained in Line 033 with 219.96 g.m -2 , which was statistically different from the those of all the other cultivars except that of Line 032, which was 186.19 g.m -2 . The higher seed yields in Line 033, as compared with other treatments, were accompanied by the highest 1000 seed weight (242.93 g), the highest number of pods per plant on the main stem (43.31) and on the auxiliary stems (33.37), and the relatively high number of seeds per pod (2.37). Results of applying limitations of the sink–source treatments on seed yield showed that the highest seed yield was obtained in the control treatment (212.17 g.m -2 ). With the removal of the top one third of the leaves, the yield decreased severely so that the least seed yield in this treatment (138.08 g.m -2 ) was 35% less than that of the control. In the treatments of removing the middle one third of the leaves and one third of the flowers, the seed yield was reduced by 28.5 and 21.8%, respectively, as compared with the control. The least effect on seed yield was observed in the treatment of removing the bottom one third of the leaves, in which the yield was 201 g.m -2 , or only 5.25% less than that of the control. The high yields in the control treatment of applying sink–source limitations were accompanied by high 1000 seed weight (220.217 g), the maximum number of seeds per pod (2.53), the maximum number of pods on the main stem (46.40), and, finally, the maximum number of pods per stem (74). The least seed yield in applying the treatment of the removal of the top one third of the leaves was also accompanied by the least 1000 seed weight (199.59 g), the fewest number of seeds per pod (2.27), the fewest number of pods per main stem (30.62), and the fewest number of pods per plant (53).
机译:2010年在Baiekola农业研究中心进行了基于随机完整区组设计的分割样地试验设计,研究源库变化对不同日期种植的大豆品种的产量和产量构成的影响。在该实验中研究的因素包括分两个阶段(6月6日,6月27日)作为主要地块的播种日期,作为子地块的品种(032、033,Sari或JK和Telar或BP系)和五个级别(包括去除顶部,中部和底部三分之一的叶子,去除三分之一的花朵,以及作为子分区的对照处理。变异分析结果表明,不同品种在(P <0.01)概率水平下,所有研究性状均存在显着差异,第一次播种(184.03 g。m -2)的种子产量比第二次播种(163.45 gm -2)低11.18%。 033系的最高种子产量为219.96 gm -2,除032系的最高产量为186.19 gm -2之外,与其他所有品种的统计学差异均在统计学上不同。加上其他处理,最高的种子重量为1000(242.93 g),最高主茎和辅助茎上的每株豆荚数量(43.31),副茎上的种子植株数量较高(2.37)。对种子产量采取汇源处理限制措施的结果表明,对照处理获得了最高的种子产量(212.17 g.m -2)。除去顶部三分之一的叶子后,产量严重下降,因此该处理中的最低种子产量(138.08 g.m -2)比对照低35%。与对照相比,在去除中间三分之一的叶子和三分之一的花朵的处理中,种子产量分别降低了28.5%和21.8%。在去除底部三分之一的叶子的处理中观察到对种子产量的影响最小,其中叶子的产量为201g.m -2,或仅比对照低5.25%。在施加水槽源限制的对照处理中,高产量伴随着高的1000种子重量(220.217 g),每荚的最大种子数(2.53),主茎上的最大荚数(46.40)和,最后是每个茎的豆荚最大数量(74)。在去除顶部三分之一的叶子的处理中,种子产量最少的同时还伴有种子重量最少的1000(199.59 g),每荚的种子最少(2.27),每荚的荚最少主茎(30.62),单株荚数最少(53)。

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