苹果PRE6-like基因的克隆及在花青素合成中的功能分析OA北大核心CSTPCD
Cloning of PRE6-like gene and analysis of its function in anthocyanin syn-thesis in apple
[目的]通过验证苹果非典型成员多效唑抗性蛋白基因(PRE6-like)的功能,探索其在花青素生物合成中的调控作用.[方法]基于俄矮2号芽变枝条果皮转录组测序结果,筛选获得花青素合成相关调节基因MdPRE6-like,对其进行生物信息学分析,克隆CDS并构建过表达载体,瞬时表达金冠苹果果实,遗传转化苹果愈伤和拟南芥进行功能验证.[结果]MdPRE6-like cDNA全长279 bp,编码92个氨基酸,相对分子质量10 450.75 Da,理论等电点(pI)为6.41,含有HLH结构域,亚细胞定位预测结果为细胞核.组织特异性表达分析表明,MdPRE6-like基因在花、果皮中的表达量显著高于根和叶.瞬时表达金冠苹果表明,MdPRE6-like显著促进了金冠苹果果皮注射部位花青素的积累,并显著提高了花青素合成通路相关结构基因的表达水平.MdPRE6-ike基因在苹果愈伤组织和拟南芥过表达表明,转基因苹果愈伤组织和拟南芥叶脉中的花青素含量显著高于野生型,且花青素合成通路结构基因表达水平上调.[结论]MdPRE6-like基因能够正向调控花青素的合成和积累,为后续MdPRE6-like基因参与改良苹果果实品质提供理论参考.
[Objective]The PREs gene,also known as the polyoxazole resistance gene,belongs to the basic/helix-loop-helix(bHLH)transcription factor family.It lacks a DNA binding domain and typically forms homodimers or heterodimers to regulate the expression of target genes,thereby influencing plant morphology,cell size,pigment metabolism and response to abiotic stress.This study aimed to verify the function of the atypical member of the polyoxazole resistance protein gene(PRE6-like)in apple and ex-plore its regulatory role in anthocyanin biosynthesis.[Methods]The Oregon Spur Ⅱ,which is highly prone to bud mutation,exhibits significantly improved fruit color compared to the original variety.A new mutant strain of the Oregon Spur Ⅱ apple was discovered,which exhibits early and intense color-ing,with a reddish fruit surface at maturity,and stable variation traits.Based on transcriptome sequenc-ing of the skin of fruits on the bud mutation branch from the Oregon Spur Ⅱ apple,a flower pigment synthesis-related regulatory gene,MdPRE6-like was identified.The coding sequence(CDS)of the Md-PRE6-like gene(MD14G1197600)was obtained from the apple genome website,and primers were de-signed using Primer 5.0 to amplify the cDNA from Oregon Spur Ⅱ the skin tissue of fruits on the bud mutation branch.Bioinformatics analysis software was used for biological information analysis,and tis-sue-specific expression was analyzed using the fluorescence quantitative PCR.The CDS region was cloned and ligated into the linearized expression vector pCAMBIA1301-GFP.Escherichia coli DH5αwas heat-shock transformed,and Agrobacterium tumefaciens GV3101 was transformed to construct the overexpression vector.Transient expression was performed in Golden Delicious apple fruit,and the col-or changes of the skin under intensive light conditions(12 000 lx)were observed to preliminarily identi-fy the gene's role in anthocyanin synthesis.Further functional validation was conducted through Agro-bacterium-mediated transformation of apple callus and by the floral dip method in Arabidopsis.[Re-sults]The MdPRE6-like is located on chromosome 14,with an open reading frame of 279 bp,encoding 92 amino acids.The molecular formula is C444H745N137O149S2,with a relative molecular weight of 10450.75 Da and a theoretical isoelectric point(pI)of 6.41.The total hydrophobicity is-0.654,which is a hydrophilic protein with a lipid solubility index of 97.50 and an instability index of 85.86.It belongs to an unstable protein,and its secondary structure shows that the protein α spiral structure accounts for 66.30%,irregular curls account for 32.61%,and extended chains account for 1.09%,so there are threeα-The atypical bHLH proteins composed of a spiral structure,which is consistent with the protein's ter-tiary structure.The subcellular localization prediction results of MdPRE6-like protein indicated that it may be localized in the nucleus.Multiple sequence alignment of its conserved domains with similar spe-cies revealed that the MdPRE6-like protein was an atypical bHLH protein containing an HLH domain.Organizational specific expression analysis showed that the expression level of MdPRE6-like gene in flowers and fruit peel was significantly higher than that in roots and leaves,indicating that this gene had a certain impact on the growth and development of apple fruit.Instantaneous expression of the Golden Delicious apple showed that MdPRE6-like significantly promoted the accumulation of anthocyanins at the injection site of the Golden Delicious apple peel,and increased the expression level of structural genes related to the anthocyanin synthesis pathway.The UFGTgene,also known as the 3-O-flavonoid glucosyltransferase gene,was significantly different from the control(p≤0.001);The overexpression of MdPRE6-like gene in apple callus and Arabidopsis thaliana revealed a significant increase in anthocyan-in content in transgenic apple callus compared with the control.The expression level of MdPRE6-like gene was 5.22 times higher than that of the control,and the relative expression level of structural genes in the anthocyanin synthesis pathway increased.The differences in CHI,DFR and F3H compared to the control were extremely significant(p<0.001),being 5.22,18.40 and 8.96 times higher,respectively.The accumulation effect of total anthocyanin content in the leaf veins of transgenic Arabidopsis was sig-nificant,and the expression level of MdPRE6-like gene in OE,and OE3 strains was 9.22 and 7.14 times higher than the control,with extremely significant differences compared to the control.[Conclusion]MdPRE6-like gene can positively regulate the synthesis and accumulation of anthocyanins and promote the expression levels of structural genes in the anthocyanin synthesis pathway.Therefore,the results can provide theoretical reference for the MdPRE6-like gene to participate in improving the quality of ap-ple fruit in the future.
黄娟娟;黄亚萍;李文芳;毛娟;陈佰鸿
甘肃农业大学园艺学院,兰州 730070
园艺学与植物营养学
苹果MdPRE6-ike花青素合成遗传转化表达水平
AppleMdPRE6-like geneAnthocyanin synthesisGenetic transformationExpression level
《果树学报》 2024 (005)
812-823 / 12
国家重点研发计划(2022YFD1602106);甘肃省教育厅"双一流"重点科研项目(GSSYLXM-02);甘肃省科技重大专项(22ZD6NA045)
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