Wei Junya, Liu Debing, Liu Guoyin, Tang Jie, Chen Yeyuan
Applied Science and Technology College, Hainan UniversityHainan, China; Tropical Crops Genetic Resources Institute, Chinese Academy of Tropical Agricultural Sciences/National Tropical Fruit Improvement Center/Hainan Tropical Fruit Cultivation Engineering Technology Research CenterHainan, China.
Applied Science and Technology College, Hainan University Hainan, China.
Front Plant Sci. 2016 Nov 29;7:1758. doi: 10.3389/fpls.2016.01758. eCollection 2016.
MADS-box transcription factor plays a crucial role in plant development, especially controlling the formation and development of floral organs. Mango ( L) is an economically important fruit crop, but its molecular control of flowering is largely unknown. To better understand the molecular basis of flowering regulation in mango, we isolated and characterized the MiSOC1, a putative mango orthologs for the SUPPRESSOR OF OVEREXPRESSION OF CONSTANS1/AGAMOUS-LIKE 20 (SOC1/AGL20) with homology-based cloning and RACE. The full-length cDNA (GenBank accession No.: KP404094) is 945 bp in length including a 74 bp long 5' UTR and a 189 bp long 3' UTR and the open reading frame was 733 bps, encoding 223 amino acids with molecular weight 25.6 kD. Both sequence alignment and phylogenetic analysis all indicated that deduced protein contained a conservative MADS-box and semi-conservative K domain and belonged to the SOC1/TM3 subfamily of the MADS-box family. Quantitative real-time PCR was performed to investigate the expression profiles of MiSOC1 gene in different tissues/organs including root, stem, leaves, flower bud, and flower. The result indicated MiSOC1 was widely expressed at different levels in both vegetative and reproductive tissues/organs with the highest expression level in the stems' leaves and inflorescences, low expression in roots and flowers. The expression of MiSOC1 in different flower developmental stages was different while same tissue -specific pattern among different varieties. In addition, MiSOC1 gene expression was affect by ethephon while high concentration ethephon inhibit the expression of MiSOC1. Overexpression of resulted in early flowering in . In conclusion, these results suggest that MiSOC1 may act as induce flower function in mango.
MADS盒转录因子在植物发育中起着关键作用,尤其在控制花器官的形成和发育方面。芒果(L)是一种具有重要经济价值的水果作物,但其开花的分子调控机制在很大程度上尚不清楚。为了更好地理解芒果开花调控的分子基础,我们通过基于同源性克隆和RACE技术,分离并鉴定了MiSOC1,它是CONSTANS1过表达抑制因子/类AGAMOUS 20(SOC1/AGL20)在芒果中的假定同源基因。全长cDNA(GenBank登录号:KP404094)长度为945 bp,包括一个74 bp长的5'非翻译区和一个189 bp长的3'非翻译区,开放阅读框为733 bp,编码223个氨基酸,分子量为25.6 kD。序列比对和系统发育分析均表明,推导的蛋白质含有保守的MADS盒和半保守的K结构域,属于MADS盒家族的SOC1/TM3亚家族。采用实时定量PCR技术研究了MiSOC1基因在根、茎、叶、花芽和花等不同组织/器官中的表达模式。结果表明,MiSOC1在营养组织和生殖组织/器官中均有不同程度的广泛表达,在茎的叶片和花序中表达水平最高,在根和花中表达较低。MiSOC1在不同花发育阶段的表达不同,但在不同品种间具有相同的组织特异性模式。此外,MiSOC1基因的表达受乙烯利影响,高浓度乙烯利抑制MiSOC1的表达。在[具体植物]中过表达[MiSOC1]导致早花。总之,这些结果表明MiSOC1可能在芒果中发挥诱导开花的功能。