首页> 美国卫生研究院文献>The Plant Cell >Arabidopsis Floral Initiator SKB1 Confers High Salt Tolerance by Regulating Transcription and Pre-mRNA Splicing through Altering Histone H4R3 and Small Nuclear Ribonucleoprotein LSM4 Methylation
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Arabidopsis Floral Initiator SKB1 Confers High Salt Tolerance by Regulating Transcription and Pre-mRNA Splicing through Altering Histone H4R3 and Small Nuclear Ribonucleoprotein LSM4 Methylation

机译:拟南芥花卉引发剂SKB1通过调节转录和通过改变组蛋白H4R3和小核糖核蛋白LSM4甲基化的前mRNA剪接赋予高盐耐受性。

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摘要

Plants adapt their growth and development in response to perceived salt stress. Although DELLA-dependent growth restraint is thought to be an integration of the plant’s response to salt stress, little is known about how histone modification confers salt stress and, in turn, affects development. Here, we report that floral initiator Shk1 kinase binding protein1 (SKB1) and histone4 arginine3 (H4R3) symmetric dimethylation (H4R3sme2) integrate responses to plant developmental progress and salt stress. Mutation of SKB1 results in salt hypersensitivity, late flowering, and growth retardation. SKB1 associates with chromatin and thereby increases the H4R3sme2 level to suppress the transcription of FLOWERING LOCUS C (FLC) and a number of stress-responsive genes. During salt stress, the H4R3sme2 level is reduced, as a consequence of SKB1 disassociating from chromatin to induce the expression of FLC and the stress-responsive genes but increasing the methylation of small nuclear ribonucleoprotein Sm-like4 (LSM4). Splicing defects are observed in the skb1 and lsm4 mutants, which are sensitive to salt. We propose that SKB1 mediates plant development and the salt response by altering the methylation status of H4R3sme2 and LSM4 and linking transcription to pre-mRNA splicing.
机译:植物响应于感知到的盐胁迫而适应其生长和发育。尽管人们认为依赖DELLA的生长抑制是植物对盐胁迫反应的综合体,但对组蛋白修饰如何赋予盐胁迫并进而影响发育的了解甚少。在这里,我们报告说,花卉引发剂Shk1激酶结合蛋白1(SKB1)和组蛋白4精氨酸3(H4R3)对称二甲基化(H4R3sme2)整合了对植物发育进程和盐胁迫的响应。 SKB1的突变导致盐超敏,开花晚和生长迟缓。 SKB1与染色质相关联,从而增加H4R3sme2水平,以抑制FLOWERING LOCUS C(FLC)和许多应激反应基因的转录。在盐胁迫期间,由于SKB1从染色质解离,从而诱导FLC和胁迫响应基因的表达,但增加了小核糖核蛋白Sm-like4(LSM4)的甲基化,H4R3sme2水平降低。在对盐敏感的skb1和lsm4突变体中观察到剪接缺陷。我们建议,SKB1通过改变H4R3sme2和LSM4的甲基化状态并将转录连接到前mRNA剪接介导植物发育和盐反应。

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