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Exceptional Segregation of a Selectable Marker (Kan(r)) in Arabidopsis Identifies Genes Important for Gametophytic Growth and Development

机译:拟南芥中选择性标记(Kan(r))的异常分离可鉴定对配子体生长和发育重要的基因

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摘要

Genes transformed into plants are usually inherited in a regular Mendelian manner. There are, however, transformants in which the selectable trait fails to segregate as expected. Genetic analysis of the kanamycin-resistance (Kan(R)) trait in >900 independent transformants of Arabidopsis revealed that 9% produced progeny families with an enormous deficiency of Kan(R) individuals. Self-pollination of individual Kan(R) plants from these families revealed lines that continued to segregate for a deficiency of Kan(R) seedlings. In subsequent generations, the segregation ratio in these families stabilized at ~1 Kan(R): 3 Kan(S). Molecular analyses showed that the deficiency of Kan(R) individuals reflected the complete absence of the introduced DNA. Reciprocal backcrosses to untransformed plants showed unequal transmission of the Kan(R) trait through the gametes in these exceptional lines. In five cases, this was primarily a failure of transmission through the microgametophyte (pollen) and in the other two cases, primarily a failure of transmission through the megagametophyte (embryo sac or egg). The number of seeds per silique was reduced by 50% in the latter two lines. We conclude that our exceptional transformants contain T-DNA insertions that delete or disrupt genes essential for gametophytic growth and development.
机译:转化为植物的基因通常以规则的孟德尔方式遗传。但是,有些转化子的选择性性状未能按预期分离。对超过900个拟南芥独立转化子中的卡那霉素抗性(Kan(R))性状的遗传分析显示,有9%的后代家族严重缺乏Kan(R)个体。来自这些科的单个Kan(R)植物的自花授粉揭示了由于缺乏Kan(R)幼苗而继续分离的品系。在随后的世代中,这些家族中的隔离率稳定在〜1 Kan(R):3 Kan(S)。分子分析表明,Kan(R)个体的缺乏反映了所引入DNA的完全缺失。与未转化植物的相互回交显示,在这些特殊品系中,Kan(R)性状通过配子的传递不均等。在五个案例中,这主要是通过配子体(花粉)传播失败,而在其他两个案例中,主要是通过配子体(胚囊或卵)传播失败。在后两行中,每个长角果的种子数量减少了50%。我们得出的结论是,我们异常的转化子包含T-DNA插入,​​这些插入会删除或破坏配子体生长和发育必不可少的基因。

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