冬瓜ARF4基因克隆及表达特性分析

    Cloning and Expression Characteristics of BhARF4 Gene in Wax Gourd (Benincasa hispida)

    • 摘要:
      目的 克隆冬瓜(Benincasa hispidaARF4基因,开展生物信息学分析,并研究其在不同组织的表达模式,为进一步深入探究BhARF4在冬瓜果实发育中的功能提供参考。
      方法 以冬瓜高代自交系B227开花当天的果实cDNA为模板,根据参考基因中BhARF4的CDS序列设计引物克隆BhARF4。在结果期,取B227不同组织(根、茎、叶、开花当天的雌花和雄花),及授粉后0、5、10、15、20、30 d的果实样本,通过qRT-PCR分析BhARF4在冬瓜不同组织的表达模式。
      结果 BhARF4含有12个外显子和2个内含子,CDS序列长2 412 bp;motif和保守结构域分析显示,BhARF4蛋白含9个motif并含有保守的ARF、AUX_IAA和B3结构域;系统进化分析显示,BhARF4蛋白与黄瓜、甜瓜的ARF4蛋白亲缘关系最近,与拟南芥、中国南瓜的ARF4蛋白亲缘关系最远;基因表达模式分析显示,4种葫芦科作物中,ARF4在甜瓜中表达量较高,在冬瓜和黄瓜中表达量较低。此外,ARF4在11份不同果型大小的冬瓜种质中的表达具有特异性,其在B227中表达量明显高于其他冬瓜材料。BhARF4在冬瓜果实中表达量较高,尤其是当天授粉的果实,其次是叶、茎、根,在雄花中的表达量最低。亚细胞定位分析发现BhARF4蛋白定位于细胞核。
      结论 明确了BhARF4的基因结构、BhARF4蛋白保守结构域等生物学信息特征,以及基因表达模式,推测BhARF4在冬瓜果实生长阶段,尤其是果实生长初期发挥重要作用,且该基因在不同冬瓜材料中表达具有特异性。

       

      Abstract:
      Objective The ARF4 gene of wax gourd (Benincasa hispida) was cloned and its expression patterns in different tissues were studied by bioinformatics analysis, thereby providing a reference for further exploration of the function of BhARF4 in the development of wax gourd fruits.
      Method With the cDNA of the fruits of B227 on the day of flowering as template, specific cloning primers were designed according to the CDS sequence of BhARF4 in the reference gene. At the fruiting stage, samples of B227 were taken from different tissues (root, stem, leaf, female and male flowers on the day of flowering, as well as fruits on different days after pollination (DAP) (0, 5, 10, 15, 20 and 30 DAP). The expression patterns of BhARF4 in different tissues of fruits were analyzed by qRT-PCR.
      Result The BhARF4 gene contained 12 exons and 2 introns, with its CDS sequence length of 2 412 bp. Motif and conserved domain analysis revealed that the BhARF4 protein contained 9 motifs and conserved ARF, AUX_IAA, and B3 domains. The phylogenetic analysis revealed that the BhARF4 protein exhibited the highest degree of similarity to the ARF4 protein derived from cucumber and melon, while displaying the most distant relationship to those from Arabidopsis thaliana and Cucurbita moschata. The gene expression pattern analysis revealed that the expression of ARF4 was highest in melon, while lower in wax gourd and cucumber among the four Cucurbitaceae crops. In addition, it had specificity in the expression level of ARF4 in 11 wax gourd germplasms with different fruit sizes, and its expression level in B227 was significantly higher than that in other wax gourd varieties. The expression level of BhARF4 was highest in B227 fruits, particularly those on the day of pollination, followed by leaves, stems and roots. In contrast, the expression level of BhARF4 was lowest in male flower. Subcellular localization analysis showed that BhARF4 protein was located in the nucleus.
      Conclusion The gene structure of BhARF4, the conserved domain of the BhARF4 protein and other biological information characteristics, as well as the gene expression pattern were identified. It is hypothesized that BhARF4 plays a significant role in the growth of wax gourd fruit, particularly during the initial stages of development. And the gene express specifically in different wax gourd materials.

       

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