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Control of Maize Vegetative and Reproductive Development Fertility and rRNAs Silencing by HISTONE DEACETYLASE 108

机译:HISTONE DEACETYLASE 108控制玉米的营养和生殖发育繁殖力和rRNA沉默

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摘要

Histone deacetylases (HDACs) catalyze the removal of acetyl groups from acetylated histone tails that consequently interact more closely with DNA, leading to chromatin state refractory to transcription. Zea mays HDA108 belongs to the Rpd3/HDA1 HDAC family and is ubiquitously expressed during development. The newly isolated hda108/hda108 insertional mutant exhibited many developmental defects: significant reduction in plant height, alterations of shoot and leaf development, and alterations of inflorescence patterning and fertility. Western blot analyses and immunolocalization experiments revealed an evident increase in histone acetylation, accompanied by a marked reduction in H3K9 dimethylation, in mutant nuclei. The DNA methylation status, in the CHG sequence context, and the transcript level of ribosomal sequences were also affected in hda108 mutants, while enrichment in H3 and H4 acetylation characterizes both repetitive and nonrepetitive transcriptional up-regulated loci. RNA-Seq of both young leaf and anthers indicated that transcription factor expression is highly affected and that the pollen developmental program is disrupted in hda108 mutants. Crosses between hda108/hda108 and epiregulator mutants did not produce any double mutant progeny indicating possible genetic interactions of HDA108 with distinct epigenetic pathways. Our findings indicate that HDA108 is directly involved in regulation of maize development, fertility, and epigenetic regulation of genome activity.
机译:组蛋白脱乙酰基酶(HDAC)催化从乙酰化组蛋白尾巴上去除乙酰基,从而与DNA相互作用更紧密,导致染色质状态难以转录。 Zea mays HDA108属于Rpd3 / HDA1 HDAC家族,在开发过程中普遍表达。新分离的hda108 / hda108插入突变体表现出许多发育缺陷:植物高度显着降低,枝和叶发育的改变以及花序模式和育性的改变。 Western印迹分析和免疫定位实验表明,突变核中组蛋白乙酰化明显增加,同时H3K9二甲基化显着降低。在hda108突变体中,在CHG序列背景下,DNA甲基化状态和核糖体序列的转录水平也受到影响,而H3和H4乙酰化的富集则表征了重复和非重复的转录上调基因座。幼叶和花药的RNA-Seq表明,转录因子的表达受到很大影响,并且hda108突变体中的花粉发育程序被破坏。 hda108 / hda108与上位调节子突变体之间的杂交未产生任何双突变体后代,表明HDA108与不同表观遗传途径的可能遗传相互作用。我们的发现表明,HDA108直接参与玉米发育,生育力和基因组活性的表观遗传调控。

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