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白光对茄子下胚轴组织中花青素合成基因的激活作用以及一个可诱导的细胞色素P-450 cDNA的鉴定

Activation of anthocyanin synthesis genes by white light in eggplant hypocotyl tissues, and identification of an inducible P-450 cDNA.

作者信息

Toguri T, Umemoto N, Kobayashi O, Ohtani T

机构信息

Central Laboratory for Key Technology, Kirin Brewery Co. Ltd, Yokohama, Japan.

出版信息

Plant Mol Biol. 1993 Dec;23(5):933-46. doi: 10.1007/BF00021810.

Abstract

Eggplant seedlings (Solanum melongena) grown under red light irradiation showed a normal morphology with green, fully expanded cotyledons. When the seedlings grown under red light were irradiated with ultraviolet-containing white light, anthocyanin synthesis was induced in the hypocotyl tissues, especially when a UV light supplement was added. The accumulation of pigments was closely associated with the expression of genes involved in flavonoid synthesis. These genes include chalcone synthase (CHS) and dihydroflavonol 4-reductase (DFR). Using subtracted probes, which had been enriched for the accumulated mRNA, one white light-responsive cDNA was identified as being a P450 gene by comparison with database sequences. The maximal amino acid homology this cDNA had with other P450s was 36%. This was with CYP71 from avocado (Persea americana). Thus it represents a new P-450 family, which has been named CYP75. The mRNA of this gene was localized in the hypocotyl tissues of eggplant seedlings, which had been white light-irradiated. The transcript was accumulated by changing the light source, as in the case of other flavonoid biosynthesis genes. In delphinidin producing petunia plants, the mRNAs corresponding to the eggplant P-450 and flavonoid biosynthesis genes such as CHS and DFR were most abundant during the mid stage of flower bud development, but could not be detected in leaf tissues. These results suggest that this P-450 gene encodes a hydroxylating enzyme involved in flavonoid biosynthesis.

摘要

在红光照射下生长的茄子幼苗(茄属植物)呈现出正常形态,子叶绿色且完全展开。当在红光下生长的幼苗接受含紫外线的白光照射时,尤其是添加了紫外线补充光后,下胚轴组织中会诱导花青素合成。色素的积累与类黄酮合成相关基因的表达密切相关。这些基因包括查尔酮合酶(CHS)和二氢黄酮醇4 - 还原酶(DFR)。通过使用对积累的mRNA进行富集的扣除探针,与数据库序列比较后,一个白光响应cDNA被鉴定为P450基因。该cDNA与其他P450的最大氨基酸同源性为36%,与鳄梨(牛油果,樟科鳄梨属)的CYP71同源。因此它代表了一个新的P - 450家族,已被命名为CYP75。该基因的mRNA定位于接受白光照射的茄子幼苗的下胚轴组织中。如同其他类黄酮生物合成基因的情况一样,转录本通过改变光源而积累。在产生飞燕草色素的矮牵牛植株中,与茄子P - 450以及CHS和DFR等类黄酮生物合成基因相对应的mRNA在花芽发育中期最为丰富,但在叶片组织中无法检测到。这些结果表明,这个P - 450基因编码一种参与类黄酮生物合成的羟化酶。

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