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Methylation of chloroplast DNA does not affect viability and maternal inheritance in tobacco and may provide a strategy towards transgene containment

机译:叶绿体DNA的甲基化不会影响烟草的生存力和母体遗传并且可能提供转基因遏制的策略

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摘要

We report the integration of a type II restriction-methylase, mFokI, into the tobacco chloroplast genome and we demonstrate that the introduced enzyme effectively directs the methylation of its target sequence in vivo and does not affect maternal inheritance. We further report the transformation of tobacco with an E. coli dcm methylase targeted to plastids and we demonstrate efficient cytosine methylation of the plastid genome. Both adenosine methylation of FokI sites and cytosine methylation of dcm sites appeared phenotypically neutral. The ability to tolerate such plastid genome methylation is a pre-requisite for a proposed plant transgene containment system. In such a system, a chloroplast located, maternally inherited restriction methylase would provide protection from a nuclear-encoded, plastid targeted restriction endonuclease. As plastids are not paternally inherited in most crop species, pollen from such plants would carry the endonuclease transgene but not the corresponding methylase; the consequence of this should be containment of all nuclear transgenes, as pollination will only be viable in crosses to the appropriate transplastomic maternal background.
机译:我们报告II型限制甲基化酶,mFokI,整合到烟草叶绿体基因组中,并且我们证明了引入的酶在体内有效地指导其靶序列的甲基化,并且不影响母体遗传。我们进一步报告了针对质体的大肠杆菌dcm甲基化酶对烟草的转化,并证明了质体基因组的有效胞嘧啶甲基化。 FokI位点的腺苷甲基化和dcm位点的胞嘧啶甲基化均在表型上呈中性。耐受这种质体基因组甲基化的能力是提出的植物转基因遏制系统的先决条件。在这样的系统中,位于叶绿体的母本遗传的限制性内切酶将提供针对核编码的,质体靶向的限制性内切核酸酶的保护。由于质体不是在大多数农作物中父系遗传的,因此来自此类植物的花粉将携带核酸内切酶转基因,但不携带相应的甲基化酶。这样做的结果应该是遏制所有核转基因,因为授粉仅在与适当的转基因组母亲背景杂交时才可行。

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