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首页> 外文期刊>Plant Cell Reports >Hormonally regulated overexpression of Arabidopsis WUS and conifer LEC1 (CHAP3A) in transgenic white spruce: implications for somatic embryo development and somatic seedling growth
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Hormonally regulated overexpression of Arabidopsis WUS and conifer LEC1 (CHAP3A) in transgenic white spruce: implications for somatic embryo development and somatic seedling growth

机译:转基因白云杉中激素调控的拟南芥WUS和针叶树LEC1(CHAP3A)的过表达:对体胚发育和体苗生长的影响

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摘要

Adult conifers are still recalcitrant in clonal propagation despite significant advances in forest tree biotechnology. Plant regeneration through somatic embryogenesis from explants older than mature zygotic embryos is either difficult or impossible to achieve. To investigate if ectopic expression of transcription factors involved in the induction of the embryogenic process would induce somatic embryogenesis in Picea glauca (white spruce) somatic plants, we used the LEAFY-COTYLEDON1 homolog cloned from Picea mariana, CHAP3A, and Arabidopsis thaliana WUS to transform embryonal mass of P. glauca. Ectopic gene expression was induced by 17-β-estradiol during stages of somatic embryogenesis (early embryogenesis and late embryogenesis) and somatic seedling growth in the transgenics. Of the two transcription factors, only WUS produced severe phenotypes by disrupting the development of somatic embryos on the maturation medium and inhibiting germination. However, none of the transgenes induced ectopic somatic embryogenesis even in the presence of plant growth regulators. Absolute quantitative PCR confirmed the expression of both CHAP3A and WUS in transgenic embryonal mass and in all parts of somatic seedlings. A high expression of the transgenes did not influence expression profiles of any of the ten other transcription factors tested, some of which have been known to be involved in the process of embryogenesis. Implications of these results for further work are discussed.
机译:尽管林木生物技术取得了重大进展,但成年针叶树在克隆繁殖中仍然是顽强的。通过比成熟合子胚年龄大的外植体的体细胞胚发生来再生植物是困难的或不可能的。为了研究参与诱导胚发生过程的转录因子的异位表达是否会在青云杉(白云杉)体细胞中诱导体细胞胚发生,我们使用了从云杉云杉,CHAP3A和拟南芥WUS克隆的LEAFY-COTYLEDON1同源物进行转化青冈的胚胎质量。 17-β-雌二醇在体细胞胚发生(早期胚发生和晚期胚发生)阶段以及转基因中的体苗生长过程中诱导异位基因表达。在这两个转录因子中,只有WUS通过破坏成熟培养基上的体细胞胚的发育并抑制发芽来产生严重的表型。然而,即使在植物生长调节剂的存在下,没有一个转基因诱导异位体细胞胚发生。绝对定量PCR证实CHAP3A和WUS在转基因胚体和体细胞幼苗的所有部位均有表达。转基因的高表达不会影响所测试的十个其他转录因子中任何一个的表达谱,其中一些已知与胚胎发生过程有关。讨论了这些结果对进一步工作的影响。

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