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Changes in Protein Synthesis upon Cytokinin-Mediated Adventitious Bud Induction and during Seedling Development in Norway Spruce Picea abies

机译:云杉云杉云杉细胞分裂素诱导的不定芽诱导和幼苗发育过程中蛋白质合成的变化

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摘要

A pulse-treatment of embryos of Picea abies (L.) Karst with cytokinin efficiently and reproducibly induces the coordinate de novo formation of bud primordia from subepidermal cells. The cytokinin treatment also affects the germinative development of the embryo; chloroplast maturation is delayed, and cell elongation is completely suppressed. We have analyzed the protein patterns in developing spruce embryos with the aim of identifying proteins which are differentially synthesized during early bud-differentiation and germination. In addition to a set of major seed storage proteins and a large set of constitutively synthesized proteins, we distinguish two sets of proteins that showed different patterns of synthesis in relation to germination. One was synthesized at high rates during germination, and the second set during post-germinative seedling development. Twenty-two proteins were differentially synthesized in the bud-induced versus the germinating embryos. Interestingly, all 22 belonged to either the germination phase-abundant or the seedling protein sets, whereas the constitutively synthesized proteins were unaffected by the treatment. Proteins synthesized exclusively in bud-induced embryos were not found. In total, the bud-induction treatment caused a maintenance of a protein synthesis pattern typical for the germination phase in the nontreated embryos, and the de novo formation of buds was not preceded by a major change in gene expression in the tissue.
机译:用细胞分裂素有效脉冲地处理云杉(Pica abies(L.))岩溶的胚,可诱导表皮下细胞从头形成新芽。细胞分裂素的处理也影响胚胎的发芽发育。叶绿体成熟被延迟,并且细胞伸长被完全抑制。我们已经分析了云杉胚发育过程中的蛋白质模式,目的是鉴定在早期芽分化和萌发过程中差异合成的蛋白质。除了一组主要的种子存储蛋白和大量的组成性合成蛋白外,我们还区分了两组与萌发相关的合成模式不同的蛋白。一种在发芽期间以高速率合成,第二种在发芽后幼苗发育期间合成。在萌芽诱导的胚芽和萌芽的胚中差异合成了22种蛋白质。有趣的是,全部22种属于发芽阶段丰富或幼苗蛋白质组,而组成合成蛋白质不受该处理的影响。没有发现仅在芽诱导的胚胎中合成的蛋白质。总体而言,芽诱导处理导致未处理胚中萌发期典型的蛋白质合成模式得以维持,并且芽的从头形成没有在组织中基因表达发生重大变化之前。

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