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Efficient isolation of Magnolia protoplasts and the application to subcellular localization of MdeHSF1

机译:高效分离木兰原生质体及其在MdeHSF1亚细胞定位中的应用

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Background Magnolia is a woody ornamental plant, which is widely used in urban landscaping. However, its lengthy juvenile period and recalcitrance to regeneration impedes functional characterization of its genes. ResultsWe developed an efficient protoplast isolation and transient expression system for Magnolia denudata × Magnolia acuminata ‘Yellow River’. The highest yield of protoplasts was obtained from young leaves digested in 3% Cellulase R10, 0.8% Macerozyme R10, 0.04% pectinase and 0.4?M mannitol enzymolysis solution for 6?h. For transfection of protoplasts, 20% PEG4000 for 5?min was optimal. To verify the protoplast system and begin to understand heat tolerance in Magnolia , a heat shock transcription factor MdeHSF1 was cloned from ‘Yellow River’, which belongs to the HSF subfamily A and has significant homology with AtHSFA1A . Subcellular localization analysis indicated that MdeHSF1 was expressed in the cell nucleus. Furthermore, qPCR analysis of the MdeHSF1 transcript level in response to high temperature stress suggested that MdeHSF1 might be involved in regulating heat stress tolerance in ‘Yellow River’. ConclusionThe described protocol provides a simple and straightforward method for isolating protoplast and exploring gene subcellular localization of MdeHSF1 in Magnolia . This expands the new research of protoplast isolation and transfection in Magnolia .
机译:背景技术木兰是木本观赏植物,广泛用于城市园林绿化。然而,其漫长的少年时期和对再生的顽固阻碍了其基因的功能表征。结果我们开发了一种高效的原生质体分离和瞬时表达系统,用于玉兰×玉兰“黄河”。在3%的纤维素酶R10、0.8%的Macerozyme R10、0.04%的果胶酶和0.4?M的甘露醇酶解液中消化6?h可获得的原生质体产量最高。对于原生质体的转染,最佳20%PEG4000 5分钟。为了验证原生质体系统并开始了解木兰的耐热性,从“黄河”中克隆了一个热激转录因子MdeHSF1,它属于HSF亚家族,与AtHSFA1A具有显着的同源性。亚细胞定位分析表明MdeHSF1在细胞核中表达。此外,针对高温胁迫响应的MdeHSF1转录水平的qPCR分析表明,MdeHSF1可能参与调节“黄河”的热胁迫耐受性。结论所述方案为分离玉兰中MdeHSF1的原生质体和探索基因亚细胞定位提供了一种简单快捷的方法。这扩大了木兰原生质体分离和转染的新研究。

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