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Natural Variation for Alleles Under Epigenetic Control by the Maize Chromomethylase Zmet2

机译:玉米染色体甲基化酶Zmet2在表观遗传控制下等位基因的自然变异。

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摘要

The contribution of epigenetic alterations to natural variation for gene transcription levels remains unclear. In this study, we investigated the functional targets of the maize chromomethylase ZMET2 in multiple inbred lines to determine whether epigenetic changes conditioned by this chromomethylase are conserved or variable within the species. Gene expression microarrays were hybridized with RNA samples from the inbred lines B73 and Mo17 and from near-isogenic derivatives containing the loss-of-function allele zmet2-m1. A set of 126 genes that displayed statistically significant differential expression in zmet2 mutants relative to wild-type plants in at least one of the two genetic backgrounds was identified. Analysis of the transcript levels in both wild-type and mutant individuals revealed that only 10% of these genes were affected in zmet2 mutants in both B73 and Mo17 genetic backgrounds. Over 80% of the genes with expression patterns affected by zmet2 mutations display variation for gene expression between wild-type B73 and Mo17 plants. Further analysis was performed for 7 genes that were transcriptionally silent in wild-type B73, but expressed in B73 zmet2-m1, wild-type Mo17, and Mo17 zmet2-m1 lines. Mapping experiments confirmed that the expression differences in wild-type B73 relative to Mo17 inbreds for these genes were caused by cis-acting regulatory variation. Methylation-sensitive PCR and bisulfite sequencing demonstrated that for 5 of these genes the CpNpG methylation in the wild-type B73 genetic background was substantially decreased in the B73 zmet2-m1 mutant and in wild-type Mo17. A survey of eight maize inbreds reveals that each of these 5 genes exhibit transcriptionally silent and methylated states in some inbred lines and unmethylated, expressed states in other inbreds, providing evidence for natural variation in epigenetic states for some maize genes.
机译:表观遗传改变对基因转录水平的自然变异的贡献仍然不清楚。在这项研究中,我们调查了多个自交系中玉米染色体甲基化酶ZMET2的功能目标,以确定该染色体甲基化条件调节的表观遗传变化在物种内是否保守或可变。将基因表达微阵列与自交系B73和Mo17以及含有功能缺失等位基因zmet2-m1的近等基因衍生物的RNA样品杂交。在至少两个遗传背景中,鉴定了一组126个基因,这些基因在zmet2突变体中相对于野生型植物显示出统计学上显着的差异表达。对野生型和突变个体的转录水平进行分析后发现,在B73和Mo17遗传背景下,zmet2突变体中只有10%的基因受到影响。超过80%的具有受zmet2突变影响的表达模式的基因显示出野生型B73和Mo17植物之间基因表达的差异。对在野生型B73中转录沉默但在B73 zmet2-m1,野生型Mo17和Mo17 zmet2-m1系中表达的7个基因进行了进一步分析。定位实验证实,这些基因的野生型B73相对于Mo17自交系的表达差异是由顺式作用的调控变异引起的。甲基化敏感的PCR和亚硫酸氢盐测序表明,对于这些基因中的5个,野生型B73遗传背景中的CpNpG甲基化在B73 zmet2-m1突变体和野生型Mo17中大大降低。对八份玉米近交系的调查显示,这五个基因中的每一个在某些近交系中均表现出转录沉默和甲基化状态,而在其他近交系中则表现出未甲基化的表达状态,这为某些玉米基因的表观遗传状态自然变化提供了证据。

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