首页> 外文期刊>Journal of Experimental Botany >Somatic embryogenesis: life and death processes during apical-basal patterning. (Special Issue: Oxidative stress and cell death.)
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Somatic embryogenesis: life and death processes during apical-basal patterning. (Special Issue: Oxidative stress and cell death.)

机译:体细胞胚胎发生:顶部基础图案中的生命和死亡过程。 (特刊:氧化应激和细胞死亡。)

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摘要

Somatic embryogenesis (SE) is a process of differentiation of cells into a plant bypassing the fusion of gametes. As such, it represents a very powerful tool in biotechnology for propagation of species with a long reproductive cycle or low seed set and production of genetically modified plants with improved traits. SE is also a versatile model to study cellular and molecular mechanisms of plant embryo patterning. The morphology and molecular regulation of SE resemble those of zygotic embryogenesis and begin with establishment of apical-basal asymmetry. The apical domain, the embryo proper, proliferates and eventually gives rise to the plantlet, while the basal part, the embryo suspensor, is terminally differentiated and gradually removed via vacuolar programmed cell death (PCD). This PCD is essential for normal development of the apical domain. Emerging evidence demonstrates that signalling events in the apical and basal domains share homologous components. Here we provide an overview of the main pathways controlling the life and death events during SE.
机译:体细胞胚胎发生(SE)是将细胞分化到植物中的过程绕过配子的融合。因此,它代表了生物技术的一种非常强大的工具,用于繁殖具有长生殖循环或低种子组的生物结构,以及具有改进性状的基因改性植物的生产。 SE也是一种多功能模型,用于研究植物胚胎图案化的细胞和分子机制。 Se的形态和分子调节类似于Zygotic Embry发生的形态学,并以建立底座基础不对称性。顶端结构域,胚胎适当,增殖和最终产生植物,而基底部分,胚胎悬浮体是通过真空编程的细胞死亡(PCD)的终端分化和逐渐除去。此PCD对于正常开发的顶端域来说是必不可少的。新兴的证据表明,顶端和基础结构域中的信号传导事件具有同源组分。在这里,我们提供控制SE期间生命和死亡事件的主要途径的概述。

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