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甘蓝型油菜中SERK1和SERK2的分子特征及表达分析:对小孢子胚胎发生和植株再生的意义

Molecular characterization and expression analysis of SERK1 and SERK2 in Brassica napus L.: implication for microspore embryogenesis and plant regeneration.

作者信息

Ahmadi Behzad, Masoomi-Aladizgeh Farhad, Shariatpanahi Mehran E, Azadi Pejman, Keshavarz-Alizadeh Mehdi

机构信息

Department of Tissue Culture and Gene Transformation, Agricultural Biotechnology Research Institute of Iran (ABRII), AREEO, 3135933151, Karaj, Iran.

出版信息

Plant Cell Rep. 2016 Jan;35(1):185-93. doi: 10.1007/s00299-015-1878-6. Epub 2015 Oct 8.

Abstract

The BnSERK1 and BnSERK2 are involved in the process of microspore embryogenesis induction, development, and plantlet regeneration. Little is known about regulatory role of somatic embryogenesis-related kinase (SERK) genes family in the induction of microspore embryogenesis, development and plant regeneration. In this study, the expression of two SERK genes (SERK1 and SERK2) was assessed during the microspore embryogenesis and plantlet regeneration in Brassica napus L. The BnSERK1 was severely up-regulated 1-5 days following microspore culture and its expression drastically decreased in the globular-heart and also torpedo staged microspore-derived embryos (MDEs). In addition, high levels of BnSERK1 transcript were detected in the MDE maturation phase and in the roots and shoots of the regenerated plantlets which indicates a broader role(s) of BnSERK1 in the organ formation, rather than being specific to the embryogenesis. Results of partial sequencing indicated that the BnSERK1 shares a conserved serine-threonine kinase catalytic domain and exhibited 95 % similarity with AtSERK1, CsSERK1, BrSERK1, NaSERK1, and NbSERK1. A steady increase in the expression of BnSERK2 was observed during the MDE initiation and development so that, the highest expression was noted in the MDE maturation phase i.e., late cotyledonary MDEs. Our results also indicated low amounts of BnSERK2 transcript at the onset of rhyzogenesis but significantly higher expression in the developing roots. In contrast, the BnSERK2 strongly up-regulated during the both initially and developed shoots. The BnSERK2 shares highly conserved LRR-RLK domain when compared with different species tested so that, high homology (100 %) was noticed with BrSERK2. Based on our findings, MDE formation and plantlet regeneration seem to be correlated with both BnSERK1 and BnSERK2 expression.

摘要

BnSERK1和BnSERK2参与小孢子胚胎发生诱导、发育及植株再生过程。关于体细胞胚胎发生相关激酶(SERK)基因家族在小孢子胚胎发生诱导、发育及植株再生中的调控作用,目前所知甚少。在本研究中,对甘蓝型油菜小孢子胚胎发生及植株再生过程中两个SERK基因(SERK1和SERK2)的表达进行了评估。小孢子培养后1 - 5天,BnSERK1被严重上调,而在球形-心形期以及鱼雷形期的小孢子衍生胚(MDEs)中其表达急剧下降。此外,在MDE成熟阶段以及再生植株的根和芽中检测到高水平的BnSERK1转录本,这表明BnSERK1在器官形成中具有更广泛的作用,而非仅限于胚胎发生。部分测序结果表明,BnSERK1具有保守的丝氨酸-苏氨酸激酶催化结构域,与AtSERK1、CsSERK1、BrSERK1、NaSERK1和NbSERK1具有95%的相似性。在MDE起始和发育过程中,观察到BnSERK2的表达稳步增加,因此在MDE成熟阶段即子叶后期MDEs中表达最高。我们的结果还表明,在生根开始时BnSERK2转录本含量较低,但在发育中的根中表达显著更高。相反,在初始芽和发育中的芽中,BnSERK2均强烈上调。与所测试的不同物种相比,BnSERK2具有高度保守的LRR - RLK结构域,与BrSERK2具有高度同源性(100%)。基于我们的研究结果,MDE形成和植株再生似乎与BnSERK1和BnSERK2的表达均相关。

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