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Maize RNA polymerase IV defines trans-generational epigenetic variation.

机译:玉米RNA聚合酶IV定义了跨代表观遗传变异。

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The maize (Zea mays) RNA Polymerase IV (Pol IV) largest subunit, RNA Polymerase D1 (RPD1 or NRPD1), is required for facilitating paramutations, restricting expression patterns of genes required for normal development, and generating small interfering RNA (siRNAs). Despite this expanded role for maize Pol IV relative to Arabidopsis thaliana, neither the general characteristics of Pol IV-regulated haplotypes, nor their prevalence, are known. Here, we show that specific haplotypes of the purple plant1 locus, encoding an anthocyanin pigment regulator, acquire and retain an expanded expression domain following transmission from siRNA biogenesis mutants. This conditioned expression pattern is progressively enhanced over generations in Pol IV mutants and then remains heritable after restoration of Pol IV function. This unusual genetic behavior is associated with promoter-proximal transposon fragments but is independent of sequences required for paramutation. These results indicate that trans-generational Pol IV action defines the expression patterns of haplotypes using co-opted transposon-derived sequences as regulatory elements. Our results provide a molecular framework for the concept that induced changes to the heterochromatic component of the genome are coincident with heritable changes in gene regulation. Alterations of this Pol IV-based regulatory system can generate potentially desirable and adaptive traits for selection to act upon.
机译:玉米(Zea mays)RNA聚合酶IV(Pol IV)最大的亚基RNA聚合酶D1(RPD1或NRPD1)是促进突变,限制正常发育所需基因的表达模式并产生小干扰RNA(siRNA)所必需的。尽管玉米Pol IV相对于拟南芥具有扩大的作用,但既不了解Pol IV调控的单倍型的一般特征,也不了解其流行程度。在这里,我们显示了紫色的plant1基因座的特定单倍型,编码花青素色素调节剂,从siRNA生物发生突变体传播后获得并保留了一个扩展的表达域。此条件表达模式在Pol IV突变体中世代逐渐增强,然后在Pol IV功能恢复后仍可遗传。这种不寻常的遗传行为与启动子附近的转座子片段有关,但独立于突变的序列。这些结果表明,跨代Pol IV的作用使用共生的转座子衍生序列作为调控元件来定义单倍型的表达模式。我们的结果为这一概念提供了分子框架,该概念导致基因组异色成分的变化与基因调控的可遗传变化相吻合。此基于Pol IV的监管系统的变更可能会产生潜在的理想和自适应特征,以供选择以采取行动。

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