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首页> 外文期刊>The Plant Cell >Embryo and Endosperm Inherit Distinct Chromatin and Transcriptional States from the Female Gametes in Arabidopsis.
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Embryo and Endosperm Inherit Distinct Chromatin and Transcriptional States from the Female Gametes in Arabidopsis.

机译:胚胎和胚乳从拟南芥的雌配子继承了不同的染色质和转录状态。

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Whether deposited maternal products are important during early seed development in flowering plants remains controversial. Here, we show that RNA interference-mediated downregulation of transcription is deleterious to endosperm development but does not block zygotic divisions. Furthermore, we show that RNA POLYMERASE II is less active in the embryo than in the endosperm. This dimorphic pattern is established late during female gametogenesis and is inherited by the two products of fertilization. This juxtaposition of distinct transcriptional activities correlates with differential patterns of histone H3 lysine 9 dimethylation, LIKE HETEROCHROMATIN PROTEIN1 localization, and Histone H2B turnover in the egg cell versus the central cell. Thus, distinct epigenetic and transcriptional patterns in the embryo and endosperm are already established in their gametic progenitors. We further demonstrate that the non-CG DNA methyltransferase CHROMOMETHYLASE3 (CMT3) and DEMETER-LIKE DNA glycosylases are required for the correct distribution of H3K9 dimethylation in the egg and central cells, respectively, and that plants defective for CMT3 activity show abnormal embryo development. Our results provide evidence that cell-specific mechanisms lead to the differentiation of epigenetically distinct female gametes in Arabidopsis thaliana. They also suggest that the establishment of a quiescent state in the zygote may play a role in the reprogramming of the young plant embryo.
机译:在开花植物的早期种子发育过程中,沉积的母体产物是否重要仍然存在争议。在这里,我们显示RNA干扰介导的转录下调对胚乳发育有害,但不会阻止合子分裂。此外,我们显示RNA聚合酶II在胚胎中的活性低于胚乳中的活性。这种双态模式是在雌性配子发生后期建立的,并由两种受精产物继承。并列的不同转录活性与卵细胞与中央细胞中组蛋白H3赖氨酸9的二甲基化,类异染色质蛋白1的定位和组蛋白H2B转换的差异模式相关。因此,在它们的配子祖细胞中已经建立了胚胎和胚乳中不同的表观遗传和转录模式。我们进一步证明,非CG DNA甲基转移酶CHROMOMETHYLASE3(CMT3)和DEMETER-LIKE DNA糖基化酶分别是正确的H3K9二甲基化在蛋和中央细胞中的分布所必需的,并且CMT3活性缺陷的植物表现出异常的胚胎发育。我们的结果提供了证据,证明细胞特异性机制导致拟南芥中表观遗传上不同的雌配子的分化。他们还建议在合子中建立静止状态可能在年轻植物胚的重编程中起作用。

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