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首页> 外文期刊>Plant Biotechnology Journal >An Arabidopsis E3 ligase HUB2 increases histone H2B monoubiquitination and enhances drought tolerance in transgenic cotton
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An Arabidopsis E3 ligase HUB2 increases histone H2B monoubiquitination and enhances drought tolerance in transgenic cotton

机译:Arabidopsis E3连接酶Hub2增加了组蛋白H2B单次素化并增强了转基因棉中的干旱耐受性

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The HUB2 gene encoding histone H2B monoubiquitination E3 ligase is involved in seed dormancy, flowering timing, defence response and salt stress regulation in Arabidopsis thaliana. In this study, we used the cauliflower mosaic virus (CaMV) 35S promoter to drive AtHUB2 overexpression in cotton and found that it can significantly improve the agricultural traits of transgenic cotton plants under drought stress conditions, including increasing the fruit branch number, boll number, and boll‐setting rate and decreasing the boll abscission rate. In addition, survival and soluble sugar, proline and leaf relative water contents were increased in transgenic cotton plants after drought stress treatment. In contrast, RNAi knockdown of GhHUB2 genes reduced the drought resistance of transgenic cotton plants. AtHUB2 overexpression increased the global H2B monoubiquitination (H2Bub1) level through a direct interaction with GhH2B1 and up‐regulated the expression of drought‐related genes in transgenic cotton plants. Furthermore, we found a significant increase in H3K4me3 at the DREB locus in transgenic cotton, although no change in H3K4me3 was identified at the global level. These results demonstrated that AtHUB2 overexpression changed H2Bub1 and H3K4me3 levels at the GhDREB chromatin locus, leading the GhDREB gene to respond quickly to drought stress to improve transgenic cotton drought resistance, but had no influence on transgenic cotton development under normal growth conditions. Our findings also provide a useful route for breeding drought‐resistant transgenic plants.
机译:编码组蛋白H2B的Hub2基因E3连接酶参与种子休眠,开花时序,拟南芥中的开花时序,防御反应和盐应激调节。在这项研究中,我们使用了花椰菜马赛克病毒(CAMV)35s启动子在棉花中驱动Athub2过表达,发现它可以在干旱胁迫条件下显着提高转基因棉花植物的农业性状,包括增加果分支号,棉铃数,和Boll-Setting率和降低铃声脱落率。此外,在干旱胁迫处理后,转基因棉植物中,在转基因棉植物中增加了生存和可溶性糖,脯氨酸和叶相对水分。相比之下,GHHUB2基因的RNAi敲低降低了转基因棉植物的抗旱性。 Athub2过表达通过与GHH2B1的直接相互作用增加了全局H2B单胞质(H2BUB1)水平,并上调了转基因棉植物中的干旱相关基因的表达。此外,我们发现在转基因棉中的DREB基因座中的H3K4ME3显着增加,尽管在全球水平上鉴定了H3K4ME3的变化。这些结果表明,Athub2过表达在GhDreb Chromatin基因座中改变了H2Bub1和H3K4Me3水平,导致GhDreb基因迅速响应干旱胁迫,以改善转基因棉花抗旱性,但在正常生长条件下对转基因棉开发没有影响。我们的研究结果还提供了一种用于抗旱转基因植物的有用途径。

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