首页> 美国卫生研究院文献>International Journal of Molecular Sciences >A Novel Sucrose-Regulatory MADS-Box Transcription Factor GmNMHC5 Promotes Root Development and Nodulation in Soybean (Glycine max L. Merr.)
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A Novel Sucrose-Regulatory MADS-Box Transcription Factor GmNMHC5 Promotes Root Development and Nodulation in Soybean (Glycine max L. Merr.)

机译:一种新型的蔗糖调节MADS框转录因子GmNMHC5促进大豆的根系发育和结瘤(Glycine max L. Merr。)

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摘要

The MADS-box protein family includes many transcription factors that have a conserved DNA-binding MADS-box domain. The proteins in this family were originally recognized to play prominent roles in floral development. Recent findings, especially with regard to the regulatory roles of the AGL17 subfamily in root development, have greatly broadened their known functions. In this study, a gene from soybean (Glycine max [L.] Merr.), GmNMHC5, was cloned from the Zigongdongdou cultivar and identified as a member of the AGL17 subfamily. Real-time fluorescence quantitative PCR analysis showed that GmNMHC5 was expressed at much higher levels in roots and nodules than in other organs. The activation of expression was first examined in leaves and roots, followed by shoot apexes. GmNMHC5 expression levels rose sharply when the plants were treated under short-day conditions (SD) and started to pod, whereas low levels were maintained in non-podding plants under long-day conditions (LD). Furthermore, overexpression of GmNMHC5 in transgenic soybean significantly promoted lateral root development and nodule building. Moreover, GmNMHC5 is upregulated by exogenous sucrose. These results indicate that GmNMHC5 can sense the sucrose signal and plays significant roles in lateral root development and nodule building.
机译:MADS-box蛋白家族包括许多具有保守的DNA结合MADS-box结构域的转录因子。该家族中的蛋白质最初被认为在花卉发育中起着重要作用。最近的发现,尤其是关于AGL17亚科在根发育中的调控作用方面,已大大扩展了其已知功能。在这项研究中,从自贡东斗品种中克隆了大豆基因(Glycine max [L.] Merr。)GmNMHC5,并将其鉴定为AGL17亚家族的成员。实时荧光定量PCR分析表明,GmNMHC5在根和根瘤中的表达水平高于其他器官。首先在叶和根中检查表达的激活,然后在茎尖中检查。当在短期条件下(SD)处理植物并开始荚果化时,GmNMHC5表达水平急剧上升,而在长期条件下(LD)的非荚果植物中GmNMHC5表达水平却保持较低水平。此外,GmNMHC5在转基因大豆中的过表达显着促进了侧根的发育和根瘤的形成。此外,GmNMHC5被外源蔗糖上调。这些结果表明,GmNMHC5可以检测到蔗糖信号,并在侧根发育和根瘤形成中起重要作用。

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