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Production of doubled haploids in sugar beet (Beta vulgaris): an efficient method by a multivariate experiment

机译:糖甜菜(β寻常型)中的双倍单倍体的生产:多变量实验的有效方法

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The present paper describes a detailed study of a highly efficient protocol to multiply the number of haploids in sugar beet production and subsequent chromosome doubling. The protocol involves an experiment investigating factorial interactions between cold pretreatment, seven genotypes of sugar beet, and kinetin to improve haploid embryo induction. In addition, the effects of color of ovules and flower bud position on haploid embryo induction were investigated. After subjecting the data to analysis of variance or Student's t test (P & .05), the effect sizes of the independent variables were also estimated. Cold pretreatment was effective in stimulating the ovules. The haploid embryo induction rate for 1-week cold pretreated ovules (9.01%) was higher than that of freshly cultured ones (6.15%). In comparison with hormone-free medium (5.16%), the gynogenesis rate for the media supplemented with 0.05 or 0.5 mg L-l kinetin increased to 7.58 and 10.05%, respectively. The genotype responses were significantly different. Interactions of kinetin x cold pretreatment, genotype x hormonal treatment, genotype x cold pretreatment, and the three-way interaction were statistically significant. Moreover, the main effects of flower bud position, ovule color, and comma-form ovule on gynogenic response were significant. After investigating the effect of 5 g L-l colchicine for 3, 5, or 7 min on one genotype's (SG2) specimens, all the haploid plantlets from the other genotypes were treated for 5 min as the best treatment. The paper discusses interactions of the factors, which may be interesting for others aiming to breed doubled haploid sugar beet or possibly other related plant species.
机译:本文介绍了一种高效方案的详细研究,以乘以糖甜菜生产中的单倍体数量和随后的染色体加倍。该方案涉及对糖甜菜七种基因型之间的实验调查阶乘相互作用,以及通过运动蛋白来改善单倍体胚胎诱导。此外,研究了胚珠颜色和花芽位置对单倍体胚胎诱导的影响。在使数据进行分析或学生的T检验(P& LT; .05)进行数据后,还估计了独立变量的效果大小。冷预处理有效刺激胚珠。 1周冷预处理胚珠(9.01%)的单倍体胚胎诱导率高于新培养的胚(9.01%)(6.15%)。与环酮培养基(5.16%)相比,介质补充有0.05或0.5mg L-L in in的介质的致生殖率分别增加到7.58和10.05%。基因型反应显着差异。 KINETIN X冷预处理的相互作用,基因型X荷尔蒙治疗,基因型X冷预处理,三元相互作用在统计学上显着。此外,花芽位置,卵子颜色和逗号胚珠对雌性致响应的主要影响是显着的。在研究一个基因型(SG2)标本上的5g L-L Colchicine的5g L-L咽喉曲霉的效果后,将来自其他基因型的所有单倍体植物处理5分钟作为最佳处理。本文讨论了因素的相互作用,这对旨在品种繁殖一倍的单倍体糖甜菜或可能其他相关植物物种的其他人可能是有趣的。

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