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The utility of haploids in breeding of winter rapeseed (Brassica napus ssp. Oleifera).

机译:单倍体在冬季油菜(甘蓝型油菜属油菜)的育种中的效用。

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Anther culture has not yet been widely used to generate new cultivars in winter rapeseed breeding programs. The first objectives of this study were to assess rapeseed genotypes from the Colorado State University breeding program for their regenerative ability in anther culture and optimize the environmental conditions for anther culture of breeding lines. Anthers of four cultivars of rapeseed--Westar, Pivot, Cascade, and Bridger--and four breeding lines from crosses of Westar x Bridger, Westar x Pivot, Bridger x Pivot, and Westar x Bridger were placed in culture and observed for embryo formation. Environmental effects of anther culture medium, days of incubation at 35{dollar}spcirc{dollar}C, and anther donor plant growth conditions on the resulting embryo production also were defined. Only two breeding lines (Westar x Bridger and Bridger x Pivot) produced embryos in anther culture, and genotype was a significant factor in embryo formation. Up to 32 percent of the anthers from the Westar x Bridger line and 2.38 percent of the anthers from the Bridger x Pivot line produced embryos. Significant differences in embryo formation also were observed due to days of incubation at 35{dollar}spcirc{dollar}C and anther donor plant growing conditions. The highest proportion of anthers producing embryoids resulted from anthers of the greenhouse-grown Westar x Bridger line after 21 days of incubation at 35{dollar}spcirc{dollar}C.; After obtaining regenerants, the next set of objectives in this study was to confirm haploid origin of regenerants and determine if selection occurs during anther culture. Haploid origin and allelic segregation ratios were investigated by using isozyme electrophoresis. Analysis of the diaphorase locus isozymes revealed a haploid origin of regenerants, existence of in vitro selection during anther culture, and linkage between diaphorase and regeneration capacity genes. Thus anther culture can be used to generate haploids for a breeding program of winter rapeseed, but haploid generation may be limited by genotypic and environmental factors, and selection may occur during the anther culture process.
机译:花药培养尚未在冬季油菜育种计划中广泛用于产生新品种。这项研究的首要目标是评估科罗拉多州立大学育种计划中的油菜基因型在花药培养中的再生能力,并优化育种系花药培养的环境条件。将四个油菜品种(Westar,Pivot,Cascade和Bridger)的花药以及来自Westar x Bridger,Westar x Pivot,Bridger x Pivot和Westar x Bridger杂交的四个育种系进行培养并观察其胚胎形成。还定义了花药培养基的环境影响,在35℃时的培养天数以及花药供体植物的生长条件对所得胚胎产量的影响。只有两个育种系(Westar x Bridger和Bridger x Pivot)在花药培养中产生了胚胎,而基因型是影响胚胎形成的重要因素。来自Westar x Bridger系的花药中多达32%和来自Bridger x Pivot系的花药中2.38%产生了胚胎。由于在35℃时的培养天数和花药供体植物的生长条件,也观察到了胚胎形成的显着差异。在35℃时,在温室中生长的Westar x Bridger系的花药在培养21天后产生的花药比例最高。获得再生体后,本研究的下一个目标是确认再生体的单倍体起源,并确定在花药培养过程中是否发生选择。使用同工酶电泳研究单倍体起源和等位基因分离比率。心肌黄递酶基因座同工酶的分析揭示了再生体的单倍体起源,花药培养过程中体外选择的存在以及心肌黄递酶与再生能力基因之间的联系。因此,花药培养可用于为冬季油菜的育种程序生成单倍体,但是单倍体的产生可能受到基因型和环境因素的限制,并且选择可能在花药培养过程中发生。

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