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Epigenetic suppression of T-DNA insertion mutants in Arabidopsis.

机译:拟南芥中T-DNA插入突变体的表观遗传抑制。

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T-DNA insertion mutants have been widely used to define gene functions in Arabidopsis and in other plants. Here, we report an unexpected phenomenon of epigenetic suppression of T-DNA insertion mutants in Arabidopsis. When the two T-DNA insertion mutants, yuc1-1 and ag-TD, were crossed together, the defects in all of the ag-TD plants in the F2 population were partially suppressed regardless of the presence of yuc1-1. Conversion of ag-TD to the suppressed ag-TD (named as ag-TD*) did not follow the laws of Mendelian genetics. The ag-TD* could be stably transmitted for many generations without reverting to ag-TD, and ag-TD* had the capacity to convert ag-TD to ag-TD*. We show that epigenetic suppression of T-DNA mutants is not a rare event, but certain structural features in the T-DNA mutants are needed in order for the suppression to take place. The suppressed T-DNA mutants we observed were all intronic T-DNA mutants and the T-DNA fragments in both the trigger T-DNA as well as in the suppressed T-DNA shared stretches of identical sequences. We demonstrate that the suppression of intronic T-DNA mutants is mediated by trans-interactions between two T-DNA insertions. This work shows that caution is needed when intronic T-DNA mutants are used.Digital Object Identifier http://dx.doi.org/10.1093/mp/sss093
机译:T-DNA插入突变体已被广泛用于定义拟南芥和其他植物中的基因功能。在这里,我们报告拟南芥中T-DNA插入突变体的表观遗传抑制的意外现象。当两个T-DNA插入突变体yuc1-1和ag-TD杂交在一起时,无论是否存在yuc1-1,F2种群中所有ag-TD植物的缺陷都被部分抑制。从ag-TD到抑制的ag-TD(称为ag-TD *)的转化未遵循孟德尔遗传学的定律。可以将ag-TD *稳定地传输许多代而无需恢复为ag-TD,并且ag-TD *具有将ag-TD转换为ag-TD *的能力。我们表明,T-DNA突变体的表观遗传学抑制不是罕见的事件,但是为了进行抑制,需要在T-DNA突变体中某些结构特征。我们观察到的抑制的T-DNA突变体都是内含子T-DNA突变体,并且在触发T-DNA以及抑制的T-DNA共有相同序列的T-DNA片段中都存在T-DNA片段。我们证明抑制内含T-DNA突变体是由两个T-DNA插入之间的反式相互作用介导的。这项工作表明,使用内含子T-DNA突变体时需要谨慎。数字对象标识符http://dx.doi.org/10.1093/mp/sss093

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