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首页> 外文期刊>Chilean Journal of Agricultural Research >Endogenous Quantification of Abscisic Acid and Indole-3-Acetic Acid in Somatic and Zigotic Embryos of Nothofagus alpina (Poepp. & Endl.) Oerst
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Endogenous Quantification of Abscisic Acid and Indole-3-Acetic Acid in Somatic and Zigotic Embryos of Nothofagus alpina (Poepp. & Endl.) Oerst

机译:内生Nothofagus alpina(Poepp。&Endl。)Oerst体细胞和Zigotic胚中脱落酸和吲哚-3-乙酸的内源性定量

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Abscisic acid (ABA) and indole-3-acetic acid (IAA) participate in the propagation of plants by somatic embryogenesis, causing polar structural differentiation of the embryo. The goal of the assay was to compare endogenous levels of ABA and IAA between somatic embryos (SE) and zygotic embryos (ZE) of Nothofagus alpina (Poepp. & Endl.) Oerst. In this study, a somatic embryo maturation assay involving the addition of varying concentrations of exogenous ABA was performed on cotyledonary-stage of N. alpina. Furthermore, the endogenous levels of ABA and IAA were quantified in the immature ZE, the mature ZE, and the embryonic axis of a mature embryo of N. alpina. The current study utilized high performance liquid chromatography (HPLC) for quantification. The maturation treatments performed did not present significant differences in the endogenous ABA levels in SE. However, significant differences did exist in levels of ABA and IAA between SE submitted to the different maturation treatments and mature ZE of N. alpina. The application of exogenous ABA to the culture medium increased endogenous ABA levels, therefore, increasing the number of germinated somatic embryos. Thus, the plant conversion process was also successfully completed in somatic embryos of N. alpina.
机译:脱落酸(ABA)和吲哚-3-乙酸(IAA)通过体细胞胚发生参与植物的繁殖,导致胚胎的极性结构分化。该测定的目的是比较Nothofagus alpina(Poepp。&Endl。)Oerst的体细胞胚(SE)和合子胚(ZE)之间的内源性ABA和IAA水平。在这项研究中,在子叶猪笼草的子叶阶段进行了涉及添加不同浓度的外源ABA的体细胞胚成熟试验。此外,ABA和IAA的内源性水平在未成熟的ZE,成熟的ZE和高山被孢霉的成熟胚的胚轴中进行了定量。当前的研究利用高效液相色谱(HPLC)进行定量。进行的成熟处理在SE中的内源ABA水平上没有显着差异。然而,在接受不同成熟处理的SE和阿尔卑斯山猪笼草的成熟ZE之间,ABA和IAA的水平确实存在显着差异。将外源ABA施加到培养基上会增加内源ABA水平,因此,增加了发芽的体细胞胚的数量。因此,植物转化过程也成功地在高山被孢霉的体细胞胚中完成。

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