首页> 外文期刊>American journal of botany >Chalcone synthase family genes have redundant roles in anthocyanin biosynthesis and in response to blue/UV-A light in turnip (Brassica rapa; Brassicaceae).
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Chalcone synthase family genes have redundant roles in anthocyanin biosynthesis and in response to blue/UV-A light in turnip (Brassica rapa; Brassicaceae).

机译:查尔酮合酶家族基因在花青素的生物合成中具有冗余作用,并且在萝卜中对蓝/ UV-A光有响应(芸苔)。

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Premise of the study: The epidermis of Brassica rapa (turnip) cv. Tsuda contains light-induced anthocyanins, visible signs of activity of chalcone synthase (CHS), a key anthocyanin biosynthetic enzyme, which is encoded by the CHS gene family. To elucidate the regulation of this light-induced pigmentation, we isolated Brassica rapa CHS1-CHS6 (BrCHS1-CHS6) and characterized their cis-elements and expression patterns. Methods: Epidermises of light-exposed swollen hypocotyls (ESHS) were harvested to analyze transcription levels of BrCHS genes by real-time PCR. Different promoters for the genes were inserted into tobacco to examine pCHS-GUS activity by histochemistry. Yeast-one-hybridization was used to detect binding activity of BrCHS motifs to transcription factors. Key results: Transcript levels of BrCHS1, -4, and -5 and anthocyanin-biosynthesis-related genes F3H, DFR, and ANS were high, while those of BrCHS2, -3, and -6 were almost undetectable in pigmented ESHS. However, in leaves, CHS5, F3H, and ANS expression was higher than in nonpigmented ESHS, but transcription of DFR was not detected. In the analysis of BrCHS1 and BrCHS3 promoter activity, GUS activity was strong in pigmented flowers of BrPCHS1-GUS-transformed tobacco plants, but nearly absent in BrPCHS3-GUS-transformed plants. Transcript levels of regulators, BrMYB75 and BrTT8, were strongly associated with the anthocyanin content and were light-induced. Coregulated cis-elements were found in promoters of BrCHS1, -4, and -5, and BrMYB75 and BrTT8 had high binding activities to the BrCHS Unit 1 motif. Conclusions: The chalcone synthase gene family encodes a redundant set of light-responsive, tissue-specific genes that are expressed at different levels and are involved in flavonoid biosynthesis in Tsuda turnip.
机译:研究的前提:芸苔的表皮。 Tsuda包含光诱导的花色苷,查尔酮合酶(CHS)是一种重要的花色苷生物合成酶,由CHS基因家族编码,具有明显的活性迹象。为了阐明这种光诱导色素沉着的调节,我们分离了芸苔属CHS1-CHS6(BrCHS1-CHS6)并表征了它们的顺式元件和表达模式。方法:收集表皮的轻度膨大的下胚轴(ESHS),通过实时PCR分析BrCHS基因的转录水平。将基因的不同启动子插入烟草中,以通过组织化学检查pCHS-GUS活性。酵母一杂交用于检测BrCHS基序与转录因子的结合活性。关键结果:BrCHS1,-4和-5和花色苷生物合成相关基因F3H,DFR和ANS的转录水平很高,而有色ESHS中几乎检测不到BrCHS2,-3和-6的转录水平。但是,在叶片中,CHS5,F3H和ANS的表达高于未着色的ESHS,但未检测到DFR的转录。在对BrCHS1和BrCHS3启动子活性的分析中,GUS活性在BrPCHS1-GUS转化烟草植物的有色花中很强,而在BrPCHS3-GUS转化植物中几乎没有。调节剂BrMYB75和BrTT8的转录水平与花青素含量密切相关,并且是光诱导的。在BrCHS1,-4和-5的启动子中发现有成核的顺式元件,并且BrMYB75和BrTT8对BrCHS第1单元基序具有很高的结合活性。结论:查尔酮合酶基因家族编码一组冗余的光响应性组织特异性基因,这些基因在不同水平表达,并参与津田芜菁的类黄酮生物合成。

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