Biology Department, Hamline University, Saint Paul, Minesota 55104, USA.
Plant Cell. 2013 Mar;25(3):780-93. doi: 10.1105/tpc.112.106427. Epub 2013 Mar 5.
Trimethylation of histone H3 Lys-27 (H3K27me3) plays a critical role in regulating gene expression during plant and animal development. We characterized the genome-wide distribution of H3K27me3 in five developmentally distinct tissues in maize (Zea mays) plants of two genetic backgrounds, B73 and Mo17. There were more substantial differences in the genome-wide profile of H3K27me3 between different tissues than between the two genotypes. The tissue-specific patterns of H3K27me3 were often associated with differences in gene expression among the tissues and most of the imprinted genes that are expressed solely from the paternal allele in endosperm are targets of H3K27me3. A comparison of the H3K27me3 targets in rice (Oryza sativa), maize, and Arabidopsis thaliana provided evidence for conservation of the H3K27me3 targets among plant species. However, there was limited evidence for conserved targeting of H3K27me3 in the two maize subgenomes derived from whole-genome duplication, suggesting the potential for subfunctionalization of chromatin regulation of paralogs. Genomic profiling of H3K27me3 in loss-of-function mutant lines for Maize Enhancer of zeste-like2 (Mez2) and Mez3, two of the three putative H3K27me3 methyltransferases present in the maize genome, suggested partial redundancy of this gene family for maintaining H3K27me3 patterns. Only a portion of the targets of H3K27me3 required Mez2 and/or Mez3, and there was limited evidence for functional consequences of H3K27me3 at these targets.
组蛋白 H3 赖氨酸 27 三甲基化(H3K27me3)在动植物发育过程中调节基因表达中起着至关重要的作用。我们对来自两个遗传背景(B73 和 Mo17)的玉米(Zea mays)植物的五个发育阶段的不同组织中的 H3K27me3 的全基因组分布进行了表征。不同组织之间的 H3K27me3 的全基因组图谱存在更大的差异,而不是两个基因型之间的差异。H3K27me3 的组织特异性模式通常与组织之间的基因表达差异相关,并且在胚乳中仅从父本等位基因表达的大多数印迹基因是 H3K27me3 的靶标。对水稻(Oryza sativa)、玉米和拟南芥(Arabidopsis thaliana)中的 H3K27me3 靶标的比较提供了植物物种之间 H3K27me3 靶标保守性的证据。然而,在来自全基因组复制的两个玉米亚基因组中,H3K27me3 的靶向作用的保守性证据有限,这表明染色质调控的同源物的潜在亚功能化。玉米 Enhancer of zeste-like2(Mez2)和 Mez3 的功能丧失突变系的 H3K27me3 基因组分析,这两种蛋白是玉米基因组中存在的三种假定的 H3K27me3 甲基转移酶中的两种,表明该基因家族在维持 H3K27me3 模式方面具有部分冗余性。只有 H3K27me3 的一部分靶标需要 Mez2 和/或 Mez3,并且在这些靶标上 H3K27me3 的功能后果的证据有限。