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八倍体大丽花中两种不同查尔酮合酶基因的转录后协同沉默导致纯白色花朵的形成。

Simultaneous post-transcriptional gene silencing of two different chalcone synthase genes resulting in pure white flowers in the octoploid dahlia.

机构信息

Laboratory of Vegetable and Ornamental Horticulture, Graduate School of Agriculture, Kyoto University, Sakyo-ku, Kyoto, 606-8502, Japan.

出版信息

Planta. 2011 Nov;234(5):945-58. doi: 10.1007/s00425-011-1456-2. Epub 2011 Jun 18.

Abstract

Garden dahlias (Dahlia variabilis) are autoallooctoploids with redundant genes producing wide color variations in flowers. There are no pure white dahlia cultivars, despite its long breeding history. However, the white areas of bicolor flower petals appear to be pure white. The objective of this experiment was to elucidate the mechanism by which the pure white color is expressed in the petals of some bicolor cultivars. A pigment analysis showed that no flavonoid derivatives were detected in the white areas of petals in a star-type cultivar 'Yuino' and the two seedling cultivars 'OriW1' and 'OriW2' borne from a red-white bicolor cultivar, 'Orihime', indicating that their white areas are pure white. Semi-quantitative RT-PCR showed that in the pure white areas, transcripts of two chalcone synthases (CHS), DvCHS1 and DvCHS2 which share 69% nucleotide similarity with each other, were barely detected. Premature mRNA of DvCHS1 and DvCHS2 were detected, indicating that these two CHS genes are silenced post-transcriptionally. RNA gel blot analysis revealed that small interfering RNAs (siRNAs) derived from CHSs were produced in these pure white areas. By high-throughput sequence analysis of small RNAs in the pure white areas with no mismatch acceptance, small RNAs were mapped to two alleles of DvCHS1 and two alleles of DvCHS2 expressed in 'Yuino' petals. Therefore, we concluded that simultaneous siRNA-mediated post-transcriptional gene silencing of redundant CHS genes results in the appearance of pure white color in dahlias.

摘要

花园大丽花(Dahlia variabilis)是具有冗余基因的自交多倍体,这些基因导致花朵颜色广泛变异。尽管大丽花已经有很长的培育历史,但仍没有纯白花品种。然而,双色花瓣的白色区域似乎是纯白色的。本实验的目的是阐明某些双色品种花瓣中纯白色表达的机制。色素分析表明,在星形品种‘Yuino’和由红白双色品种‘Orihime’衍生的两个实生品种‘OriW1’和‘OriW2’的花瓣白色区域未检测到类黄酮衍生物,表明其白色区域为纯白色。半定量 RT-PCR 显示,在纯白色区域,彼此间有 69%核苷酸相似性的两个查尔酮合酶(CHS),DvCHS1 和 DvCHS2 的转录本几乎检测不到。检测到 DvCHS1 和 DvCHS2 的前体 mRNA,表明这两个 CHS 基因在转录后被沉默。RNA 凝胶印迹分析显示,在这些纯白色区域产生了源自 CHS 的小干扰 RNA(siRNA)。通过对无错配接受的纯白色区域小 RNA 的高通量序列分析,小 RNA 被映射到‘Yuino’花瓣中表达的两个 DvCHS1 等位基因和两个 DvCHS2 等位基因。因此,我们得出结论,冗余 CHS 基因的 siRNA 介导的转录后基因沉默导致大丽花出现纯白色。

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