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首页> 外文期刊>The Plant Cell >The CHD3 Chromatin Remodeler PICKLE and Polycomb Group Proteins Antagonistically Regulate Meristem Activity in the Arabidopsis Root
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The CHD3 Chromatin Remodeler PICKLE and Polycomb Group Proteins Antagonistically Regulate Meristem Activity in the Arabidopsis Root

机译:CHD3染色质重塑剂泡菜和polycomb组蛋白拮抗调节拟南芥根中的分生组织活性。

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The chromatin modifying Polycomb group (PcG) and trithorax group (trxG) proteins are central regulators of cell identity that maintain a tightly controlled balance between cell proliferation and cell differentiation. The opposing activities of PcG and trxG proteins ensure the correct expression of specific transcriptional programs at defined developmental stages. Here, we report that the chromatin remodeling factor PICKLE (PKL) and the PcG protein CURLY LEAF (CLF) antagonistically determine root meristem activity. Whereas loss of PKL function caused a decrease in meristematic activity, loss of CLF function increased meristematic activity. Alterations of meristematic activity in pkl and clf mutants were not connected with changes in auxin concentration but correlated with decreased or increased expression of root stem cell and meristem marker genes, respectively. Root stem cell and meristem marker genes are modified by the PcG-mediated trimethylation of histone H3 on lysine 27 (H3K27me3). Decreased expression levels of root stem cell and meristem marker genes in pkl correlated with increased levels of H3K27me3, indicating that root meristem activity is largely controlled by the antagonistic activity of PcG proteins and PKL.
机译:染色质修饰的Polycomb组(PcG)和trithorax组(trxG)蛋白是细胞身份的主要调节剂,可在细胞增殖和细胞分化之间保持紧密控制的平衡。 PcG和trxG蛋白的相反活性可确保特定的转录程序在定义的发育阶段正确表达。在这里,我们报道染色质重塑因子PICKLE(PKL)和PcG蛋白CURLY LEAF(CLF)拮抗确定根分生组织的活性。 PKL功能丧失导致分生活动减少,而CLF功能丧失增加分生活动。 pkl和clf突变体的分生组织活性的变化与生长素浓度的变化无关,但分别与根干细胞和分生组织标记基因表达的降低或增加相关。根干细胞和分生组织标记基因通过赖氨酸27(H3K27me3)上的组蛋白H3的PcG介导的三甲基化修饰。 PK1中根干细胞和分生组织标记基因表达水平的降低与H3K27me3水平的升高相关,表明根分生组织的活性很大程度上受PcG蛋白和PKL的拮抗活性控制。

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