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首页> 外文期刊>Journal of Plant Physiology >cDNA cloning and expression of the phytoene synthase gene in sunflower.
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cDNA cloning and expression of the phytoene synthase gene in sunflower.

机译:向日葵中植六烯合酶基因的cDNA克隆和表达。

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A PCR approach was used to isolate a phytoene synthase (Psy) cDNA from sunflower (Helianthus annuus L.). A reconstructed full-length sequence (1598 bp) of the Psy cDNA was obtained; it contained a 1242 bp CDS, 172-nucleotides of 5'-untranslated region (UTR), and 170-nucleotides of 3'-UTR. The predicted protein (46.8 kDa) displayed a sequence of 414 amino acid residues with a putative transit sequence for plastid targeting in the N-terminal region. Phylogenetic analysis demonstrated that the sunflower Psy (HaPsy) clustered with the marigold (Tagetes erecta) Psy gene, with which it showed an overall amino acid identity of 93.7%. Moreover, the HaPsy sequence relates closely with other Psy sequences of higher plants. HaPsy was highly expressed in cotyledons, and young and mature leaves. In contrast, HaPsy transcript levels were comparatively lower in the stem and almost absent in the roots. The HaPsy transcript levels were influenced by leaf expansion, which suggested that the expression of the HaPsy gene is regulated during the process of leaf development. The role of HaPsy in controlling carotenoid biosynthesis is demonstrated by the concurrent increase of HaPsy transcript levels with the light-dependent enhanced carotenoid production in green tissues of sunflower.
机译:使用PCR方法从向日葵(Helianthus annuus L.)中分离出八氢番茄红素合酶(Psy)cDNA。获得了重建的Psy cDNA的全长序列(1598 bp);它包含1242 bp的CDS,5'非翻译区(UTR)的172个核苷酸和3'-UTR的170个核苷酸。预测的蛋白质(46.8 kDa)显示了414个氨基酸残基的序列,并在N端区域定位了针对质体的假定转运序列。系统发育分析表明,向日葵Psy(HaPsy)与万寿菊(Tagetes erecta)Psy基因聚簇,与之显示出总体氨基酸同一性为93.7%。而且,HaPsy序列与高等植物的其他Psy序列紧密相关。 HaPsy在子叶以及年轻和成熟的叶子中高度表达。相反,HaPsy转录本水平在茎中相对较低,而在根中则几乎不存在。 HaPsy转录水平受叶片扩展的影响,这表明HaPsy基因的表达在叶片发育过程中受到调控。 HaPsy在控制类胡萝卜素生物合成中的作用通过向日葵绿色组织中HaPsy转录水平的同时增加和光依赖性增强类胡萝卜素的产生而得到证明。

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