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首页> 外文期刊>The Plant Cell >A Robust Auxin Response Network Controls Embryo and Suspensor Development through a Basic Helix Loop Helix Transcriptional Module
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A Robust Auxin Response Network Controls Embryo and Suspensor Development through a Basic Helix Loop Helix Transcriptional Module

机译:一种强大的助化响应网络通过基本螺旋循环螺旋转录模块控制胚胎和悬浮镜开发

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摘要

Land plants reproduce sexually by developing an embryo from a fertilized egg cell. However, embryos can also be formed from other cell types in many plant species. Thus, a key question is how embryo identity in plants is controlled, and how this process is modified during nonzygotic embryogenesis. The Arabidopsis (Arabidopsis thaliana) zygote divides to produce an embryonic lineage and an extra-embryonic suspensor. Yet, normally quiescent suspensor cells can develop a second embryo when the initial embryo is damaged, or when response to the signaling molecule auxin is locally blocked. Here we used auxindependent suspensor embryogenesis as a model to determine transcriptome changes during embryonic reprogramming. We found that reprogramming is complex and accompanied by large transcriptomic changes before anatomical changes. This analysis revealed a strong enrichment for genes encoding components of auxin homeostasis and response among misregulated genes. Strikingly, deregulation among multiple auxin-related gene families converged upon the reestablishment of cellular auxin levels or response. This finding points to a remarkable degree of feedback regulation to create resilience in the auxin response during embryo development. Starting from the transcriptome of auxin-deregulated embryos, we identified an auxin-dependent basic Helix Loop Helix transcription factor network that mediates the activity of this hormone in suppressing embryo development from the suspensor.
机译:土地植物通过从受精卵细胞开发胚胎而繁殖性。然而,胚胎也可以由许多植物种类中的其他细胞类型形成。因此,关键问题是控制植物中的胚胎同一性如何,以及如何在非血频胚胎发生期间修饰该过程。拟南芥(Arabidopsis Thaliana)Zygote分裂以产生胚胎谱系和额外的胚胎悬浮镜。然而,当初始胚胎被损坏时或者当局部封端时,通常静态悬浮细胞可以在初始胚胎损坏时发生第二胚胎。在这里,我们使用型贫化依赖性悬浮胚胚细胞胚胎作为模型,以确定胚胎重编程期间的转录组变化。我们发现重新编程是复杂的,并伴随着解剖改变前的大转录组变化。该分析揭示了在编码疾病性稳态的组分和误导基因之间的反应的基因的强烈富集。尖锐的是,在重新建立细胞毒素水平或反应时,多种生长素相关的基因家族中的令人抑制。这一发现指出了一个显着的反馈调节程度,以在胚胎发育期间在蟾蜍响应中产生弹性。从生长素造成的胚胎的转录组开始,我们鉴定了一种抑制依赖性依赖性基本螺旋环螺旋转录因子网络,该转录因子网络介导该激素的活性抑制悬浮液的胚胎发育。

著录项

  • 来源
    《The Plant Cell 》 |2019年第1期| 共16页
  • 作者单位

    Wageningen Univ &

    Res Lab Biochem Stippeneng 4 NL-6708WE Wageningen Netherlands;

    Wageningen Univ &

    Res Lab Biochem Stippeneng 4 NL-6708WE Wageningen Netherlands;

    Wageningen Univ &

    Res Lab Biochem Stippeneng 4 NL-6708WE Wageningen Netherlands;

    Wageningen Univ &

    Res Lab Biochem Stippeneng 4 NL-6708WE Wageningen Netherlands;

    CNR Plant Biotechnol Inst 110 Gymnasium Pl Saskatoon SK S7N 0W9 Canada;

    Wageningen Univ &

    Res Lab Biochem Stippeneng 4 NL-6708WE Wageningen Netherlands;

    Wageningen Univ &

    Res Lab Biochem Stippeneng 4 NL-6708WE Wageningen Netherlands;

    Wageningen Univ &

    Res Div Human Nutr Stippeneng 4 NL-6708WE Wageningen Netherlands;

    Wageningen Univ &

    Res Div Human Nutr Stippeneng 4 NL-6708WE Wageningen Netherlands;

    CNR Plant Biotechnol Inst 110 Gymnasium Pl Saskatoon SK S7N 0W9 Canada;

    Wageningen Univ &

    Res Lab Biochem Stippeneng 4 NL-6708WE Wageningen Netherlands;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物细胞学 ;
  • 关键词

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