比利时杜鹃花RhDFR基因克隆及分析
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浙江省重点研发计划(2021C02053);宁波市科技创新2025现代种业重大专项(2021Z005);生物工程一流学科创新项目(CX2021031)


Cloning and Analysis of RhDFR Gene in Rhododendron hybridum Hort.
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    摘要:

    二氢黄酮醇-4-还原酶(DFR)是植物花青素合成过程中的关键酶,能够催化二氢黄酮醇生成无色花青素。该试验以红色和白色比利时杜鹃花(Rhododendron hybridum Hort.)不同器官和不同发育时期的花瓣为实验材料,利用反转录(RT-PCR)和RACE技术克隆RhDFR基因,利用植物酶联免疫试剂盒(ELISA)测定不同发育时期的花瓣RhDFR酶活性,利用qRT-PCR技术定量分析不同器官和不同发育时期的花瓣RhDFR基因,构建pET-28a-RhDFR原核表达载体对RhDFR蛋白进行制备和纯化,为进一步探究杜鹃花DFR基因功能以及花色的分子机理奠定基础。结果表明:(1)成功获得比利时杜鹃花RhDFR基因全长1 253 bp,其开放阅读框1 035 bp,编码344个氨基酸,含有1个NADPH结合保守基序和1个底物结合区域,具有高度保守性;系统进化分析显示,比利时杜鹃花RhDFR蛋白与越橘(Vaccinium corymbosum)DFR蛋白亲缘关系最近。(2)ELISA试剂盒分析显示,比利时杜鹃花不同发育时期的花瓣DFR酶活性呈先上升后下降的趋势,并于红花初开期和白花盛开期的DFR酶活性最高。(3)qRT-PCR分析显示,不同器官中RhDFR基因的表达量为花瓣最高,雄蕊最低;不同发育时期的花瓣中,红色花的RhDFR基因表达量高于白色花。(4)成功构建原核表达载体pET-28a-RhDFR并诱导表达出大小约为38 kD的蛋白,与理论值相近。研究认为,杜鹃花中DFR酶活性的功能多样化,DFR基因与比利时杜鹃花花瓣的颜色有关。

    Abstract:

    Dihydroflavonol-4-reductase (DFR) is a key enzyme in phycocyanin synthesis that catalyzes the production of colorless anthocyanins from dihydroflavonols. In this experiment, petals from different organs and different developmental periods of red and white Rhododendron hybridum Hort. were used as experimental materials, and the RhDFR gene of R. hybridum Hort. was cloned with reverse transcription (RT-PCR) and RACE techniques, and the plant enzyme-linked immunoassay kit (ELISA) was used to determine petal RhDFR enzyme activity of petals at different developmental stages, and the qRT-PCR technology was used to quantify the petal RhDFR gene in different organs and different developmental stages, and the preparation and purification of RhDFR protein by pET-28a-RhDFR prokaryotic expression vector was constructed, which laid a foundation for further exploration of the function of Rhododendron DFR gene and the molecular mechanism of flower color. The results showed that: (1) successful acquisition of R. hybridum Hort. RhDFR gene is 1 253 bp long, an open reading frame of 1 035 bp, encoding 344 amino acids, and contains a NADPH-binding region and a substrate-binding region with high conservation. Phylogenetic analysis showed that R. hybridum Hort. RhDFR protein is most closely related to the DFR protein of lingonberry (Vaccinium corymbosum). (2) The analysis of ELISA kit showed that the DFR enzyme activity of petals showed in different stages of development of R. hybridum Hort. first increased and then decreased, and the DFR enzyme activity was the highest in the middle opening stage of red flower and full opening stage of white flower. (3) The qRT-PCR analysis showed that the expression of RhDFR gene in different organs was the highest in petals, and the lowest in stamens; In petals at different developmental stages of development, red flowers had higher RhDFR gene expression than white flowers. (4) The prokaryotic expression vector pET-28a-RhDFR was successfully constructed and induced to express a protein with a size of about 38 kD, which was similar to the theoretical value. It is believed that the function of DFR enzyme activity in Rhododendron is diversified, and the DFR gene is related to the color of R. hybridum Hort. petals.

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蒋宝鑫,汪庆昊,杨国霞,等.比利时杜鹃花RhDFR基因克隆及分析[J].西北植物学报,2023,43(1):10-20

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  • 在线发布日期: 2023-07-13
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