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Endogenous Nod-Factor-Like Signal Molecules Promote Early SomaticEmbryo Development in Norway Spruce

机译:内源性点因子因子信号分子促进早期体细胞挪威云杉的胚胎发育

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摘要

Embryogenic cultures of Norway spruce (Picea abies) are composed of pro-embryogenic masses (PEMs) and somatic embryos of various developmental stages. Auxin is important for PEM formation and proliferation. In this report we show that depletion of auxin blocks PEM development and causes large-scale cell death. Extracts of the media conditioned by embryogenic cultures stimulate development of PEM aggregates in auxin-deficient cultures. Partial characterization of the conditioning factor shows that it is a lipophilic, low-molecular-weight molecule, which is sensitive to chitinase and contains GlcNAc residues. On the basis of this information, we propose that the factor is a lipophilic chitin oligosaccharide (LCO). The amount of LCO correlates to the developmental stages of PEMs and embryos, with the highest level in the media conditioned by developmentally blocked cultures. LCO is not present in nonembryogenic cultures. Cell death, induced by withdrawal of auxin, is suppressed by extra supply of endogenous LCO or Nod factor from Rhizobium sp. NGR234. The effect can be mimicked bya chitotetraose or chitinase from Streptomyces griseus.Taken together, our data suggest that endogenous LCO acts as a signalmolecule stimulating PEM and early embryo development in Norwayspruce.
机译:挪威云杉(Picea abies)的胚发生培养物由前胚发生质量(PEM)和各个发育阶段的体细胞胚组成。生长素对PEM的形成和增殖很重要。在此报告中,我们表明生长素的消耗会阻止PEM的发展并引起大规模细胞死亡。由胚发生培养物调节的培养基的提取物刺激生长素缺乏培养物中PEM聚集体的发育。调节因子的部分特征表明它是亲脂性的低分子量分子,对几丁质酶敏感并含有GlcNAc残基。根据此信息,我们建议该因素是亲脂性几丁质寡糖(LCO)。 LCO的数量与PEM和胚胎的发育阶段相关,在受发育受阻的培养条件下,培养基中的LCO含量最高。非致胚性培养物中不存在LCO。生长素的撤离诱导的细胞死亡被根瘤菌的额外内源性LCO或Nod因子抑制。 NGR234。效果可以模仿灰链霉菌的壳四糖或几丁质酶。综上所述,我们的数据表明内源性LCO充当信号分子刺激挪威的PEM和早期胚胎发育云杉。

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