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Reproductive Components of Safflower Genotypes Submitted of Bulk Density Levels in the Brazilian Cerrado

机译:在巴西咖喱族的批量密度水平提交的红花基因型的生殖组分

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Nutrient absorption in crops can decline and their development can be hindered by increased bulk density. This study aimed at assessing the manner in which bulk density levels affect the reproductive structures of the safflower genotypes in the Brazilian Cerrado. The completely randomized design was adopted with four replications for the experiment, which was conducted in a greenhouse using Oxisol collected from 0.0 to 0.2 m depth from the region supporting Cerrado vegetation. The treatments included ten safflower genotypes (PI 237538, PI 248385, PI 250196, PI 301049, PI 305173, PI 305205, PI 306520, PI 306603, PI 560202 and PI 613366) and five bulk density levels (1.0, 1.2, 1.4, 1.6 and 1.8 Mg style="font-family:Verdana;">· style="font-family:Verdana;">m style="font-family:Verdana;">- style="font-family:Verdana;">3 style="font-family:Verdana;">). Evaluations were done at 90 days after emergence, in terms of the number, diameter and dry mass of the heads. The data were submitted to the analysis of variance. The means were grouped using the Scott-Knott test at 5% probability. The diameter and dry mass of the chapters were influenced by the mean bulk density of 1.10 Mg style="font-family:Verdana;">· style="font-family:Verdana;">m style="font-family:Verdana;">- style="font-family:Verdana;">3 style="font-family:Verdana;">. A notable interaction was evident between the safflower genotypes and bulk density levels for the diameter and dry mass of the head alone, revealing the high degree of genetic variability that environmental changes induce among the genotypes. The PI 250196, PI 301049, PI 305173 and PI 305205 genotypes exhibited greater stability to the bulk density variations compared with the others. Mean bulk density of 1.2 Mg style="font-family:Verdana;">· style="font-family:Verdana;">m style="font-family:Verdana;">- style="font-family:Verdana;">3 style="font-family:Verdana;"> was found to impair the development of the reproductive components of the safflower genotypes.
机译:作物中的营养吸收可以下降,并且它们的发育可以通过增加的堆积密度阻碍。本研究旨在评估批量密度水平影响巴西咖喱菌中红花基因型的生殖结构的方式。通过四种试验采用完全随机的设计,其使用从支撑Cerrado植被的区域收集的oxisol在0.0至0.2米深度中进行的温室进行。该处理包括十种红花基因型(PI 237538,PI 248385,PI 250196,PI 301049,PI 305173,PI 305205​​,PI 306520,PI 306603,PI 560202和PI 613366)和五个散装密度水平(1.0,1.2,1.4,1.6 1.8 mg y style =“font-family:verdana;”>· style =“font-family:verdana;”> m style =“font-family :verdana;“> - style =”font-family:verdana;“> 3 style =”font-family:verdana; “>)。在出现后90天后,在头部的数量,直径和干燥质量方面进行评估。数据已提交给方差分析。使用Scott-Knott测试以5%的概率进行分组。章节的直径和干燥质量受到1.10 mg y =“font-family:verdana;”>· de =“font-family:verdana ;“> m style =”font-family:verdana;“> - style =”font-family:verdana;“> 3 style =“font-family:verdana;”>。单独的红花基因型和堆积块的批量密度水平之间显着的相互作用是明显的,揭示了在基因型中诱导环境变化的高度遗传变化。 PI 250196,PI 301049,PI 305173和PI 305205​​基因型与其他与其他相比的堆积密度变化表现出更大的稳定性。平均堆积密度为1.2 mg style =“font-family:verdana;”>· style =“font-family:verdana;”> m < Span Style =“Font-Family:Verdana;”> - style =“font-family:verdana;”> 3 styled = “Font-Family:Verdana;”>被发现损害了红花基因型的生殖组分的发展。

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