首页> 外文期刊>Molecular Biology Reports >Selection of housekeeping genes for gene expression studies on the development of fruit bearing shoots in Chinese jujube (Ziziphus jujube Mill.)
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Selection of housekeeping genes for gene expression studies on the development of fruit bearing shoots in Chinese jujube (Ziziphus jujube Mill.)

机译:选择管家基因以进行枣果实结实芽发育的基因表达研究。

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摘要

Chinese jujube (Ziziphus jujube Mill.) is important economically for its fruit and also bears attractive medical value. Its flower development concurs with the growth of current fruit bearing shoots (FBSs). However, events involved in current FBSs, including FBS differentiation, flower development, and reliable housekeeping gene are still unknown. In this study, the morphology of FBS development and floral formation were examined and expression profiles of several potential internal control genes was determined. These included genes encoding proteins involved in protein translation (translation elongation factor 1α, ZjEF1), protein folding (cyclophilin, ZjCyP) or degradation (ubiquitin extension protein, ZjUBQ), and proteins involved in the structure of the cytoskeleton (β-actin, ZjACT) or nucleosome (histone3, ZjH3). Our results showed that the floral development in early growing FBSs (less than 20 mm in length) or shoot apices was not complete. Among ZjACT, ZjEF1, ZjCyP, ZjUBQ, and ZjH3, ZjH3 was the most suitable housekeeping gene to evaluate FBS development, based on their expression in early growing FBSs, shoot apices, and different organs. These results will be useful for further molecular mechanism study about FBS development in Chinese jujube.
机译:枣(Zipziphus jujube Mill。)因其果实而在经济上很重要,并且具有诱人的医学价值。它的花发育与当前的果芽(FBSs)的生长一致。但是,当前FBS涉及的事件,包括FBS分化,花朵发育和可靠的管家基因,仍然未知。在这项研究中,检查了FBS发育和花形成的形态,并确定了几种潜在的内部控制基因的表达谱。这些基因包括编码参与蛋白质翻译的蛋白质的基因(翻译延伸因子1α,ZjEF1),蛋白质折叠(亲环蛋白,ZjCyP)或降解(泛素延伸蛋白,ZjUBQ)以及涉及细胞骨架结构的蛋白质(β-肌动蛋白,ZjACT) )或核小体(histone3,ZjH3)。我们的结果表明,早期生长的FBS(长度小于20毫米)或嫩芽的花发育不完全。在ZjACT,ZjEF1,ZjCyP,ZjUBQ和ZjH3中,ZjH3是最适合评估FBS发育的管家基因,基于它们在早期生长的FBS,茎尖和不同器官中的表达。这些结果将有助于进一步研究红枣中FBS的分子机制。

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