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Direct reprogramming of adult somatic cells toward adventitious root formation in forest tree species: the effect of the juvenile–adult transition

机译:成年体细胞对林木物种不定根形成的直接重编程:少年-成年过渡的影响

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摘要

Cellular plasticity refers, among others, to the capability of differentiated cells to switch the differentiation process and acquire new fates. One way by which plant cell plasticity is manifested is through de novo regeneration of organs from somatic differentiated cells in an ectopic location. However, switching the developmental program of adult cells prior to organ regeneration is difficult in many plant species, especially in forest tree species. In these species, a decline in the capacity to regenerate shoots, roots, or embryos from somatic differentiated cells is associated with tree age and maturation. The decline in the ability to form adventitious roots from stem cuttings is one of the most dramatic effects of maturation, and has been the subject of investigations on the basic nature of the process. Cell fate switches, both in plants and animals, are characterized by remarkable changes in the pattern of gene expression, as cells switch from the characteristic expression pattern of a somatic cell to a new one directing a new developmental pathway. Therefore, determining the way by which cells reset their gene expression pattern is crucial to understand cellular plasticity. The presence of specific cellular signaling pathways or tissue-specific factors underlying the establishment, maintenance, and redirection of gene expression patterns in the tissues involved in adventitious root formation could be crucial for cell fate switch and for the control of age-dependent cellular plasticity.
机译:细胞可塑性尤其是指分化的细胞转换分化过程并获得新命运的能力。表现出植物细胞可塑性的一种方法是通过异位部位从体细胞分化的器官从头再生。然而,在许多植物物种中,尤其是在林木物种中,在器官再生之前转换成年细胞的发育程序是困难的。在这些物种中,从体细胞分化的芽再生芽,根或胚的能力下降与树龄和成熟有关。由茎cutting插形成不定根的能力下降是成熟最显着的影响之一,并且一直是对该过程基本性质进行研究的主题。在植物和动物中,细胞命运的切换都以基因表达模式的显着变化为特征,因为细胞从体细胞的特征性表达模式转换为指导新的发育途径的新模式。因此,确定细胞重置其基因表达模式的方式对于理解细胞可塑性至关重要。在不定根形成所涉及的组织中,基因表达模式的建立,维持和重定向所基于的特定细胞信号通路或组织特异性因素的存在对于细胞命运转换和控制年龄依赖性细胞可塑性至关重要。

著录项

  • 期刊名称 Frontiers in Plant Science
  • 作者

    Carmen Díaz-Sala;

  • 作者单位
  • 年(卷),期 2014(5),-1
  • 年度 2014
  • 页码 310
  • 总页数 8
  • 原文格式 PDF
  • 正文语种
  • 中图分类 情报学;
  • 关键词

    机译:年龄;生长素梯度;细胞命运;发育可塑性;表观遗传学;基因表达;成熟度;多能性;

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