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Metabolite profiling of somatic embryos of Cyclamen persicum in comparison to zygotic embryos, endosperm, and testa

机译:与合子胚,胚乳和睾丸相比,仙客来体细胞胚的代谢产物谱

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摘要

Somatic embryogenesis has been shown to be an efficient in vitro plant regeneration system for many crops such as the important ornamental plant Cyclamen persicum, for which this regeneration pathway of somatic embryogenesis is of interest for the vegetative propagation of parental lines as well as elite plants. However, somatic embryogenesis is not commercially used in many crops due to several unsolved problems, such as malformations, asynchronous development, deficiencies in maturation and germination of somatic embryos. In contrast, zygotic embryos in seeds develop and germinate without abnormalities in most cases. Instead of time-consuming and labor-intensive experiments involving tests of different in vitro culture conditions and plant growth regulator supplements, we follow a more directed approach. Zygotic embryos served as a reference and were compared to somatic embryos in metabolomic analyses allowing the future optimization of the in vitro system. The aims of this study were to detect differences in the metabolite profiles of torpedo stage somatic and zygotic embryos of C. persicum. Moreover, major metabolites in endosperm and testa were identified and quantified. Two sets of extracts of two to four biological replicates each were analyzed. In total 52 metabolites were identified and quantified in the different tissues. One of the most significant differences between somatic and zygotic embryos was that the proline concentration in the zygotic embryos was about 40 times higher than that found in somatic embryos. Epicatechin, a scavenger for reactive oxygen species, was found in highest abundance in the testa. Sucrose, the most abundant metabolite was detected in significantly higher concentrations in zygotic embryos. Also, a yet unknown trisaccharide, was significantly enriched in zygotic embryos.
机译:体细胞胚发生已被证明是许多作物(例如重要的观赏植物仙客来)的有效体外植物再生系统,为此,该体细胞胚发生的再生途径对于亲本系和优良植物的营养繁殖非常重要。然而,由于一些未解决的问题,例如畸形,异步发育,体细胞胚的成熟和发芽不足,体细胞胚发生在许多作物上没有商业应用。相反,大多数情况下,种子中的合子胚发育并发芽而没有异常。我们采用了更具针对性的方法,而不是耗时且费力的实验,包括测试不同的体外培养条件和植物生长调节剂。合子胚作为参考,并在代谢组学分析中与体细胞胚进行了比较,从而可以进一步优化体外系统。这项研究的目的是检测在水芹的鱼雷阶段体细胞和合子胚的代谢产物中的差异。此外,鉴定并定量了胚乳和睾丸中的主要代谢产物。分析了两组提取物,每组都有两到四个生物学重复。在不同的组织中共鉴定并定量了52种代谢物。体细胞和合子胚之间最显着的差异之一是,合子胚中脯氨酸的浓度比体细胞胚中的脯氨酸浓度高约40倍。表儿茶素是一种活性氧清除剂,在睾丸中的丰度最高。在合子胚中,蔗糖是最丰富的代谢产物,其浓度明显较高。同样,尚未发现的三糖在合子胚中明显富集。

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