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首页> 外文期刊>Journal of biosciences >A four-element based transposon system for allele specific tagging in plants a€“ Theoretical considerations
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A four-element based transposon system for allele specific tagging in plants a€“ Theoretical considerations

机译:用于植物等位基因特异性标记的基于四元素的转座子系统和理论考虑

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The two-element transposon constructs, utilizing either Ac/Ds or Spm/dSpm, allow random tagging of genes in heterologous model species, but are inadequate for directed tagging of specific alleles of agronomic importance. We propose the use of Ac/Ds in conjunction with Spm/dSpm to develop a four-element system for directed tagging of crop-specific alleles. The four-element based construct would include both Ds and dSpm along with relevant marker genes and would function in two steps. In the first step dSpm(Ds) stocks (a minimum of two) would be crossed to a line containing transposases of Spm and unlinked integrations would be selected from segregating population by the use of a negative selection marker to develop stocks representing integration of dSpm(Ds) at a large number of locations in the genome. Selections would be made for a line in which dSpm(Ds) shows partial or complete linkage to the allele of interest. In the second step selected line would be crossed to a line containing Ac transposase to induce transpositions of Ds element to linked sites thereby exploiting the natural tendency of Ds element to jump to linked sites. Unlinked jumps of dSpm(Ds) and linked jumps of Ds could be monitored by appropriate marker genes. The proposed model would allow tagging of allele of interest in chromosome addition lines and also help in the efficient use of genic male sterility systems for hybrid seed production by tightly marking the fertility restorer gene with a negative selection marker.
机译:利用Ac / Ds或Spm / dSpm的两元素转座子构建体,可以随机标记异源模型物种中的基因,但不足以直接标记具有农艺学意义的特定等位基因。我们建议结合Ac / D与Spm / dSpm来开发一种四元素系统,用于作物特异性等位基因的定向标记。基于四元素的构建体将包括Ds和dSpm以及相关的标记基因,并且将在两个步骤中起作用。第一步,将dSpm(Ds)种群(最少两支)与包含Spm转座酶的品系杂交,并通过使用负选择标记开发代表dSpm( Ds)在基因组中的许多位置。将针对其中dSpm(Ds)显示与目标等位基因部分或完全连接的线进行选择。在第二步中,选择的线将与含有Ac转座酶的线交叉以诱导Ds元件向连接位点的转座,从而利用Ds元件跳至连接位点的天然趋势。 dSpm(Ds)的非连锁跃迁和Ds的连锁跃迁可以通过适当的标记基因进行监测。拟议的模型将允许在染色体添加品系中标记感兴趣的等位基因,并通过使用负选择标记紧密标记生育力恢复基因,从而有助于有效利用基因雄性不育系统进行杂交种子生产。

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