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A method for accelerated trait conversion in plant breeding

机译:一种植物育种中性状加速转化的方法

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Backcrossing is often used in cultivar development to transfer one or a few genes to desired genetic backgrounds. The duration necessary to complete such ‘trait conversions’ is largely dependent upon generation times. Constitutive overexpression of the Arabidopsis thaliana gene FT (FLOWERING LOCUS T) induces early-flowering in many plants. Here, we used tobacco (Nicotiana tabacum L.) as a model system to propose and examine aspects of a modified backcross procedure where transgenic FT overexpression is used to reduce generation time and accelerate gene transfer. In this method, the breeder would select for an FT transgene insertion and the trait(s) of interest at each backcross generation except the last. In the final generation, selection would be conducted for the trait(s) of interest, but against FT, to generate the backcross-derived trait conversion. We demonstrate here that constitutive FT overexpression functions to dramatically reduce days-to-flower similarly in diverse tobacco genetic backgrounds. FT-containing plants flowered in an average of 39 days, in comparison with 87–138 days for non-FT plants. Two FT transgene insertions were found to segregate independently of several disease resistance genes often the focus of backcrossing in tobacco. In addition, no undesirable epigenetic effects on flowering time were observed once FT was segregated away. The proposed system would reduce the time required to complete a trait conversion in tobacco by nearly one-half. These features suggest the possible value of this modified backcrossing system for tobacco or other crop species where long generation times or photoperiod sensitivity may impede timely trait conversion.
机译:回交通常用于品种开发中,以将一个或几个基因转移至所需的遗传背景。完成此类“特征转换”所需的时间很大程度上取决于生成时间。拟南芥基因FT(FLOWERING LOCUS T)的组成型过表达诱导许多植物的早花。在这里,我们使用烟草(Nicotiana tabacum L.)作为模型系统,提出并研究了改良的回交程序的各个方面,在这些程序中,转基因FT过表达用于减少产生时间并加速基因转移。在这种方法中,育种者将选择FT转基因插入,并选择除最后一个杂交回交以外的每个回交世代所关注的性状。在最后一代中,将针对感兴趣的性状进行选择,但要针对FT,以生成回交衍生的性状转换。我们在这里证明,在不同的烟草遗传背景中,组成型FT过度表达功能可显着减少开花天数。含FT的植物平均开花39天,而非FT的植物平均开花87-138天。发现两个FT转基因插入独立于几个疾病抗性基因而分离,这些基因通常是烟草回交的重点。此外,一旦分离出FT,就没有观察到对开花时间的不良表观遗传学影响。拟议的系统将使完成烟草特征转换所需的时间减少近一半。这些特征表明,这种改良的回交系统对烟草或其他农作物品种的价值很大,因为较长的世代时间或光周期敏感性可能会阻碍及时的性状转化。

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