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Overexpression of Several Arabidopsis Histone Genes Increases Agrobacterium-Mediated Transformation and Transgene Expression in Plants

机译:几种拟南芥组蛋白基因的过表达增加农杆菌介导的植物转化和转基因表达

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摘要

The Arabidopsis thaliana histone H2A-1 is important for Agrobacterium tumefaciens–mediated plant transformation. Mutation of HTA1, the gene encoding histone H2A-1, results in decreased T-DNA integration into the genome of Arabidopsis roots, whereas overexpression of HTA1 increases transformation frequency. To understand the mechanism by which HTA1 enhances transformation, we investigated the effects of overexpression of numerous Arabidopsis histones on transformation and transgene expression. Transgenic Arabidopsis containing cDNAs encoding histone H2A (HTA), histone H4 (HFO), and histone H3-11 (HTR11) displayed increased transformation susceptibility, whereas histone H2B (HTB) and most histone H3 (HTR) cDNAs did not increase transformation. A parallel increase in transient gene expression was observed when histone HTA, HFO, or HTR11 overexpression constructs were cotransfected with double- or single-stranded forms of a gusA gene into tobacco (Nicotiana tabacum) protoplasts. However, these cDNAs did not increase expression of a previously integrated transgene. We identified the N-terminal 39 amino acids of H2A-1 as sufficient to increase transient transgene expression in plants. After transfection, transgene DNA accumulates more rapidly in the presence of HTA1 than with a control construction. Our results suggest that certain histones enhance transgene expression, protect incoming transgene DNA during the initial stages of transformation, and subsequently increase the efficiency of Agrobacterium-mediated transformation.
机译:拟南芥组蛋白H2A-1对于根癌农杆菌介导的植物转化很重要。编码组蛋白H2A-1的基因HTA1的突变导致拟南芥根基因组中的T-DNA整合减少,而HTA1的过表达则增加了转化频率。为了了解HTA1增强转化的机制,我们研究了许多拟南芥组蛋白过表达对转化和转基因表达的影响。包含编码组蛋白H2A(HTA),组蛋白H4(HFO)和组蛋白H3-11(HTR11)的cDNA的转基因拟南芥显示出增加的转化敏感性,而组蛋白H2B(HTB)和大多数组蛋白H3(HTR)cDNA却没有增加转化率。将组蛋白HTA,HFO或 HTR11 过表达构建体与 gusA 基因的双链或单链形式共转染到烟草中时,观察到瞬时基因表达平行增加。 Nicotiana tabacum )原生质体。但是,这些cDNA不会增加以前整合的转基因的表达。我们确定H2A-1的N端39个氨基酸足以增加植物中瞬时转基因的表达。转染后,在 HTA1 存在下,转基因DNA的积累比对照结构更快。我们的结果表明,某些组蛋白可增强转基因表达,在转化的初始阶段保护传入的转基因DNA,并随后提高农杆菌介导的转化效率。

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