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Epigenetic chromatin modifiers in barley: IV. The study of barley Polycomb group (PcG) genes during seed development and in response to external ABA

机译:大麦的表观遗传染色质修饰剂:IV。大麦Polycomb组(PcG)基因在种子发育过程中以及对外部ABA的响应的研究

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Background Epigenetic phenomena have been associated with the regulation of active and silent chromatin states achieved by modifications of chromatin structure through DNA methylation, and histone post-translational modifications. The latter is accomplished, in part, through the action of PcG (Polycomb group) protein complexes which methylate nucleosomal histone tails at specific sites, ultimately leading to chromatin compaction and gene silencing. Different PcG complex variants operating during different developmental stages have been described in plants. In particular, the so-called FIE/MEA/FIS2 complex governs the expression of genes important in embryo and endosperm development in Arabidopsis . In our effort to understand the epigenetic mechanisms regulating seed development in barley ( Hordeum vulgare ), an agronomically important monocot plant cultivated for its endosperm, we set out to characterize the genes encoding barley PcG proteins. Results Four barley PcG gene homologues, named HvFIE , HvE(Z), HvSu(z)12a , and HvSu(z)12b were identified and structurally and phylogenetically characterized. The corresponding genes HvFIE , HvE(Z), HvSu(z)12a , and HvSu(z)12b were mapped onto barley chromosomes 7H, 4H, 2H and 5H, respectively. Expression analysis of the PcG genes revealed significant differences in gene expression among tissues and seed developmental stages and between barley cultivars with varying seed size. Furthermore, HvFIE and HvE(Z) gene expression was responsive to the abiotic stress-related hormone abscisic acid (ABA) known to be involved in seed maturation, dormancy and germination. Conclusion This study reports the first characterization of the PcG homologues, HvFIE, HvE(Z) , HvSu(z)12a and HvSu(z)12b in barley. All genes co-localized with known chromosomal regions responsible for malting quality related traits, suggesting that they might be used for developing molecular markers to be applied in marker assisted selection. The PcG differential expression pattern in different tissues and seed developmental stages as well as in two barley cultivars with different seed size is suggestive of a role for these genes in barley seed development. HvFIE and HvE(Z) were also found to be induced by the plant hormone ABA implying an association with ABA-mediated processes during seed development, germination and stress response.
机译:背景技术表观遗传现象与通过DNA甲基化修饰染色质结构和组蛋白翻译后修饰实现的活性和沉默染色质状态调节有关。后者部分地是通过PcG(Polycomb group)蛋白复合物的作用实现的,该复合物在特定位点甲基化核小体组蛋白尾巴,最终导致染色质紧缩和基因沉默。在植物中已经描述了在不同发育阶段操作的不同PcG复合体变体。特别地,所谓的FIE / MEA / FIS2复合物控制拟南芥中对胚和胚乳发育重要的基因的表达。为了了解调节大麦(大麦)(一种因其胚乳而栽培的具有农学意义的重要单子叶植物)的种子发育的表观遗传机制,我们着手表征编码大麦PcG蛋白的基因。结果鉴定出四个大麦PcG基因同源物,分别为HvFIE,HvE(Z),HvSu(z)12a和HvSu(z)12b,并在结构和系统发育上进行了表征。相应的基因HvFIE,HvE(Z),HvSu(z)12a和HvSu(z)12b分别定位到大麦染色体7H,4H,2H和5H。 PcG基因的表达分析表明,在组织和种子发育阶段之间以及在具有不同种子大小的大麦品种之间,基因表达存在显着差异。此外,HvFIE和HvE(Z)基因表达对已知与种子成熟,休眠和萌发有关的非生物胁迫相关激素脱落酸(ABA)有反应。结论本研究报告了大麦中PcG同源物HvFIE,HvE(Z),HvSu(z)12a和HvSu(z)12b的第一个特征。所有基因与负责与麦芽品质相关的性状有关的已知染色体区域共定位,表明它们可用于开发分子标记,以应用于标记辅助选择。在不同组织和种子发育阶段以及两个具有不同种子大小的大麦品种中,PcG差异表达模式提示这些基因在大麦种子发育中的作用。还发现HvFIE和HvE(Z)由植物激素ABA诱导,这暗示了在种子发育,发芽和胁迫反应期间与ABA介导的过程相关。

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