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首页> 外文期刊>Tree Physiology >Somaclonal variation in micropropagated oil palm. Characterization of two novel genes with enhanced expression in epigenetically abnormal cell lines and in response to auxin
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Somaclonal variation in micropropagated oil palm. Characterization of two novel genes with enhanced expression in epigenetically abnormal cell lines and in response to auxin

机译:微繁殖油棕的体细胞克隆变异。表征在表观遗传异常细胞系中表达增强并响应生长素的两个新基因

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摘要

In vitro micropropagation based on somatic embryogenesis provides an efficient means to multiply selected genotypes of oil palm (Elaeis guineensis Jacq.). Despite its considerable potential, somatic embryogenesis can yield plants bearing a homeotic flowering abnormality known as mantled. Because the mantled abnormality is epigenetic, it cannot be detected with conventional structural molecular markers. Thus, to develop a means of discriminating among callus cultures carrying or lacking the mantled abnormality, we used a gene expression approach. We describe two novel oil palm genes, EgM39A and EgIAA1, both of which display increased transcript accumulation in epigenetically abnormal calli. EgIAA1 codes for an oil palm relative of the Arabidopsis thaliana (L.) Heynh. AXR3/IAA17 protein involved in early auxin response and EgM39A codes for a protein of unknown function sharing sequence similarities with asparagine synthetases. In addition to their enhanced expression in somaclonal variant callus lines, both genes displayed increased transcript accumulation in response to auxin treatment. Normal seed-derived zygotic embryos germinated in the presence of auxin accumulated increased amounts of EgIAA1 transcripts after a few hours of treatment, suggesting a role in auxin response similar to that demonstrated for IAA genes in other species. The EgM39A gene also displayed enhanced transcript accumulation in auxin-treated zygotic embryos. Although only a small increase was seen after 24 h, greater changes were observed after 15 days. Both genes show potential as early markers of clonal conformity and may help to elucidate the nature of the epigenetic changes causing the mantled abnormality.
机译:基于体细胞胚发生的体外微繁殖提供了一种有效的方法来繁殖油棕(Elaeis guineensis Jacq。)的选定基因型。尽管具有巨大的潜力,但体细胞胚发生仍可以产生带有顺势开花异常(被称为披风)的植物。由于套膜异常是表观遗传的,因此无法用常规结构分子标记物检测到。因此,为了发展出一种区分携带或缺乏异常异常的愈伤组织培养物的方法,我们使用了一种基因表达方法。我们描述了两个新颖的油棕基因,EgM39A和EgIAA1,这两个基因在表观遗传异常的愈伤组织中均显示增加的转录积累。 EgIAA1编码拟南芥(L.)Heynh的油棕亲戚。参与早期生长素应答的AXR3 / IAA17蛋白和EgM39A编码的功能未知的蛋白与天冬酰胺合成酶具有相似的序列。除了它们在体细胞无性变体愈伤组织中的增强表达外,两个基因都响应生长素处理而显示出增加的转录物积累。在生长素存在下萌发的正常种子衍生的合子胚在处理数小时后积累了更多数量的EgIAA1转录本,表明其在生长素反应中的作用类似于在其他物种中对IAA基因的表现。 EgM39A基因还在生长素处理的合子胚中显示出增强的转录本积累。尽管24小时后仅观察到很小的增加,但15天后观察到了更大的变化。这两个基因均显示出作为克隆整合的早期标记物的潜力,并可能有助于阐明引起披覆异常的表观遗传变化的性质。

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