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园艺学报 ›› 2018, Vol. 45 ›› Issue (4): 702-716.doi: 10.16420/j.issn.0513-353x.2017-0313

• 研究论文 • 上一篇    下一篇

LA杂交系百合特征花香释放规律及关键基因研究

章毅颖*,李雯琪*,吕英民**   

  1. 北京林业大学园林学院,国家花卉工程技术研究中心,北京 100083
  • 出版日期:2018-04-25 发布日期:2018-04-25
  • 基金资助:

    国家自然科学基金项目(31672190);国家‘十二五’‘863’计划项目(2011AA1002084)

Characterization of Emitted Volatiles and Key Genes in Lilium longiflorum × Asiatic

ZHANG Yiying*,LI Wenqi*,and Lü Yingmin**   

  1. College of Landscape Architecture,China National Floriculture Engineering Research Centre,Beijing Forestry University,Beijing 100083,China
  • Online:2018-04-25 Published:2018-04-25

摘要:

使用顶空固相微萃取(HS–SPME)—气相色谱—质谱(GC–MS)联用技术和实时荧光定量技术,分析LA杂交系百合(Lilium longiflorum × Asiatic hybrids)花香释放代谢途径的生物化学规律和遗传特征。对比LA系百合、麝香百合(Longiflorum hybrids)、亚洲百合(Asiatic hybrids)、OT系百合(Oriential hybrids × Trumpet hybrids)4个杂交系的5个品种挥发物释放差异;利用同源克隆从LA百合中克隆得到3个甲羟戊酸合成途径(MVA)中的关键基因。结果表明:5个百合品种花香成分释放存在显著差异,萜烯类化合物的释放规律与香气程度基本一致。LA百合‘爱神’在初开期花香释放达到顶峰,随后逐渐降低;花瓣的香味释放量最大。不同杂交系百合MVA途径合成酶基因(HMGR、MVD、FPS、TPS)的表达模式不同,关键基因的表达量影响最终产物的生成。在LA百合‘爱神’中克隆得到LlaTPS,在开花进程中,LlaTPS表达趋势与萜烯类化合物释放规律相似,表明其是控制萜烯类化合物挥发量的关键基因。LlaTPS cDNA全长1 799 bp,具开放阅读框1 764 bp,共编码587个氨基酸。系统进化树分析得出LlaTPS与同属百合‘Siberia’亲缘关系最近,属于TPSb亚家族。克隆得到合成倍半萜前提物质FPP的关键基因——法尼基焦磷酸合酶基因LlaFPPS,cDNA全长1 072 bp,开放阅读框1 056 bp,共编码351个氨基酸;其编码蛋白与单子叶植物FPPS蛋白亲缘关系较近。克隆得到焦磷酸甲羟戊酸脱羧酶(MVD)基因LlaMVD(KX034060),cDNA全长1 439 bp,开放阅读框1 275 bp,共编码424个氨基酸;百合MVD与油棕(Elaeis guineensis)、短花药野生稻(Oryza brachyantha)等单子叶植物亲缘关系较近。

关键词: 百合, 花香, TPS, FPPS, MVD

Abstract:

Using headspace solid–phase microextraction(HS–SPME),gas chromatography–mass spectrometry(GC–MS)and quantitative real-time PCR techniques,we analyzed the biochemical and genetic characterization of the metabolic pathway on fragrance emission of Lilium longiflorum × Asiatic hybrids(LA). Five interspecific Lilium hybrids cultivars were collected to analyze the differences in scent emissions including Lilium longiflorum × Asiatic hybrids,Longiflorum hybrids,Asiatic hybrids and Oriential hybrids × Trumpet hybrids. These five cultivars were divided into three levels:non-scented,light-scented,and strong-scented. Three key genes of the mevalonic acid(MVA)pathway were isolated from LA hybrids by the homology cloning. The results indicated that there were significant differences in the release of floral scent components in five lily hybrids with different levels of fragrance,and the emitted regulation of terpene compounds was consistent with the degree of perceptible fragrance. The aroma content of‘Freya’reached the maximum in the early flowering period,and the aroma content of tepal was the highest among the four floral tissues. The expression patterns of enzyme genes(HMGR,MVD,FPS and TPS)in the MVA pathway were different in different interspecific lily cultivars. The expression level of TPS was consistent with the emitted regulation of terpene compounds on the flowering of‘Freya’,which indicated that TPS played a pivotal role in the volatilization of terpene compounds. We obtained a terpene synthase gene named as LlaTPS in LA hybrids‘Freya’,which was the final step in the MVA pathway. The full length of the cDNA was 1 799 bp,with an open reading frame of 1 764 bp,encoding a total of 587 amino acids. The phylogenetic tree analysis showed that LlaTPS was the closest to the monoterpene synthase of Lilium hybrid cultivar‘Siberia’,and belonged to TPSb subfamily. LlaFPPS was cloned from LA hybrids‘Freya’,which can catalyze farnesyl diphosphate(FPP)as the precursor for sesquiterpene. The full length of the cDNA was 1 072 bp,with an open reading frame of 1 056 bp,encoding a total of 351 amino acids. The phylogenetic tree analysis showed that LlaFPPS encoding protein had a close relationship with monocotyledons plant FPPS protein,and far more distant from leguminous plants. LlaMVD(KX034060)was isolated from LA hybrids‘Freya’,which was the key gene in the MVA pathway. The full length of the cDNA was 1 439 bp,with an open reading frame of 1 275 bp,encoding a total of 424 amino acids. The phylogenetic tree analysis showed that Lilium MVD is closely related to that of Elaeis guineensis and Oryza brachyantha.

Key words: lily, Lilium longiflorum ×, Asiatic hybrids, floral scent, TPS, FPPS, MVD

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