首页> 外文期刊>Plant Production Science >Analysis of the Number of Spikelets per Panicle on the Main Stems, Primary and Secondary Tillers of Different Rice Genotypes Grown under the Conventional and Nitrogen-Free Basal Dressing Accompanied with Sparse Planting Density Practices
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Analysis of the Number of Spikelets per Panicle on the Main Stems, Primary and Secondary Tillers of Different Rice Genotypes Grown under the Conventional and Nitrogen-Free Basal Dressing Accompanied with Sparse Planting Density Practices

机译:常规和无氮基础拌种和稀疏种植方式下种植的不同基因型水稻主茎,主要和次T分Pan上的小穗数分析

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The number and development of spikelets on a panicle directly affect the grain yield. In this study, we examined the differences among various rice cultivars in the number of spikelets per panicle (NSP-1) on the main stems (MS), primary tillers (PT) and secondary tillers (ST), and in the numbers of spikelets on the primary and secondary rachis branches. The difference among cultivars in the responses of these characteristics to the practice of nitrogen-free basal dressing accompanied with sparse planting density (BNo) was also elucidated. The results showed that NSP-1 varied with the tiller position on a plant, and it was highest on MS followed by PT and ST in this order in all cultivars. NSP-1 on all MS, PT and ST also varied with the cultivar, and was larger in the cultivars of the panicle-weight type than in those of the panicle-number type. The difference between MS and ST in NSP-1 was larger in the cultivars of the panicle-weight type than in those of the panicle-number type.NSP-1 was larger in BNo than in the conventional cultivation (CONT) in most cultivars. The difference between BNo and CONT in NSP-1 varied with the tiller position on a plant and with the earliness of the cultivar, but did not clearly vary with the plant type of the cultivar. It was larger in the panicle on ST than on MS or PT, and was larger in the late-maturing cultivars than in the early- and medium-maturing ones. The larger NSP-1 on MS or PT compared with ST, in the cultivars of the panicle-weight type compared with those of the panicle-number type, and in BNo compared with CONT was mainly attributed to the increased number of spikelets on secondary rachis branches.
机译:穗上小穗的数量和发育直接影响谷物的产量。在这项研究中,我们研究了不同水稻品种之间在主茎(MS),初级分primary(PT)和次级分ers(ST)上每穗小穗数(NSP-1)的差异。在初级和次级rachis分支上。还阐明了这些特性对无氮基肥与稀疏种植密度(BNo)的反应对这些特性的反应之间的差异。结果表明,NSP-1随植物分position位置而变化,在所有品种中,其在MS上最高,其后依次是PT和ST。所有MS,PT和ST上的NSP-1也随品种而变化,并且在穗重类型的品种中NSP-1比穗数类型的品种大。穗重型品种的NSP-1中MS和ST之间的差异比穗数型品种中的MS和ST之间的差异大.BNo中的NSP-1比大多数品种中的常规栽培(CONT)大。 NSP-1中BNo和CONT之间的差异随植物的分till位置和品种的早熟而变化,但并没有随品种的植物类型而明显变化。在ST上的穗比在MS或PT上大,在晚熟品种比早中早品种大。与ST相比,MS或PT上NSP-1更大,在穗重类型上与穗数类型上的品种相比,在NNo-1中,在BNo中比CONT更大,这主要归因于继发ra上小穗数量的增加分支机构。

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