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From the Cover: Control of DEMETER DNA demethylase gene transcription in male and female gamete companion cells in Arabidopsis thaliana

机译:从封面开始:拟南芥雄配子和雌配子伴侣细胞中DEMETER DNA脱甲基酶基因转录的控制

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摘要

The DEMETER (DME) DNA glycosylase initiates active DNA demethylation via the base-excision repair pathway and is vital for reproduction in Arabidopsis thaliana. DME-mediated DNA demethylation is preferentially targeted to small, AT-rich, and nucleosome-depleted euchromatic transposable elements, influencing expression of adjacent genes and leading to imprinting in the endosperm. In the female gametophyte, DME expression and subsequent genome-wide DNA demethylation are confined to the companion cell of the egg, the central cell. Here, we show that, in the male gametophyte, DME expression is limited to the companion cell of sperm, the vegetative cell, and to a narrow window of time: immediately after separation of the companion cell lineage from the germline. We define transcriptional regulatory elements of DME using reporter genes, showing that a small region, which surprisingly lies within the DME gene, controls its expression in male and female companion cells. DME expression from this minimal promoter is sufficient to rescue seed abortion and the aberrant DNA methylome associated with the null dme-2 mutation. Within this minimal promoter, we found short, conserved enhancer sequences necessary for the transcriptional activities of DME and combined predicted binding motifs with published transcription factor binding coordinates to produce a list of candidate upstream pathway members in the genetic circuitry controlling DNA demethylation in gamete companion cells. These data show how DNA demethylation is regulated to facilitate endosperm gene imprinting and potential transgenerational epigenetic regulation, without subjecting the germline to potentially deleterious transposable element demethylation.
机译:DEMETER(DME)DNA糖基化酶通过碱基切除修复途径启动活性DNA脱甲基化,对于拟南芥的繁殖至关重要。 DME介导的DNA去甲基化优先针对小的,富含AT且核小体的真色转座因子,从而影响邻近基因的表达并导致在胚乳中的印记。在雌配子体中,DME表达和随后的全基因组DNA去甲基化仅限于卵的陪伴细胞,即中央细胞。在这里,我们表明,在雄配子体中,DME表达仅限于精子的陪伴细胞,营养细胞以及狭窄的时间范围:陪伴细胞谱系与种系分离后立即发生。我们使用报告基因定义了DME的转录调控元件,显示出一个小区域,该区域出乎意料地位于DME基因内,控制着它在雄性和雌性同伴细胞中的表达。此最小启动子的DME表达足以挽救种子流产和与无效dme-2突变相关的异常DNA甲基化。在此最小启动子内,我们发现了DME转录活性所必需的短而保守的增强子序列,并结合了预测的结合基序和已发表的转录因子结合坐标,从而在控制配子伴侣细胞中DNA脱甲基的遗传电路中产生了候选上游途径成员的列表。 。这些数据显示了如何调节DNA脱甲基以促进胚乳基因印迹和潜在的转基因表观遗传调控,而不会使种系遭受潜在有害的转座因子脱甲基。

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