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两个 R2R3-MYB 基因,拟南芥 AN2 的同源物,调控亚洲百合花朵的花被片、花被片斑点和叶片中的花色素苷生物合成。

Two R2R3-MYB genes, homologs of Petunia AN2, regulate anthocyanin biosyntheses in flower Tepals, tepal spots and leaves of asiatic hybrid lily.

机构信息

Research Faculty of Agriculture, Hokkaido University, Kita-ku, Sapporo, 060-8589 Japan.

出版信息

Plant Cell Physiol. 2010 Mar;51(3):463-74. doi: 10.1093/pcp/pcq011. Epub 2010 Jan 28.

Abstract

Anthocyanins are secondary metabolites that contribute to colors of flowers, fruits and leaves. Asiatic hybrid lily (Lilium spp.) accumulates cyanidin anthocyanins in flower tepals, tepal spots and leaves of juvenile shoots. To clarify their mechanisms of regulation of anthocyanin pigmentation, two full-length cDNAs of R2R3-MYB (LhMYB6 and LhMYB12) were isolated from the anthocyanin-accumulating tepals of cultivar 'Montreux'. Analysis of the deduced amino acid sequences indicated they have homology with petunia AN2, homologous sequences of which had not been isolated in species of monocots. Yeast two-hybrid analysis showed that LhMYB6 and LhMYB12 interacted with the Lilium hybrid basic helix-loop-helix 2 (LhbHLH2) protein. Transient expression analysis indicated that co-expression of LhMYB6 and LhbHLH2 or LhMYB12 and LhbHLH2, introduced by a microprojectile, activated the transcription of anthocyanin biosynthesis genes in lily bulbscales. Spatial and temporal transcription of LhMYB6 and LhMYB12 was analyzed. The expression of LhMYB12 corresponded well with anthocyanin pigmentation in tepals, filaments and styles, and that of LhMYB6 correlated with anthocyanin spots in tepals and light-induced pigmentation in leaves. These results indicate that LhMYB6 and LhMYB12 positively regulate anthocyanin biosynthesis and determine organ- and tissue-specific accumulation of anthocyanin.

摘要

花色素苷是一种次生代谢产物,有助于花、果实和叶子的颜色。亚洲杂种百合(Lilium spp.)在花瓣、花瓣斑点和幼茎叶片中积累矢车菊素花色素苷。为了阐明其花色素苷色素调节的机制,从花色积累的花瓣中分离出两个全长 R2R3-MYB(LhMYB6 和 LhMYB12)的 cDNA。对推导的氨基酸序列进行分析表明,它们与矮牵牛 AN2 具有同源性,而单子叶植物的同源序列尚未分离出来。酵母双杂交分析表明,LhMYB6 和 LhMYB12 与百合杂种基本螺旋-环-螺旋 2(LhbHLH2)蛋白相互作用。瞬时表达分析表明,通过微弹丸共表达 LhMYB6 和 LhbHLH2 或 LhMYB12 和 LhbHLH2 可激活百合鳞茎中花色素苷生物合成基因的转录。分析了 LhMYB6 和 LhMYB12 的时空转录。LhMYB12 的表达与花瓣、花丝和花柱中的花色素苷色素化很好地对应,而 LhMYB6 的表达与花瓣中的花色素苷斑点和叶片中的光诱导色素化相关。这些结果表明,LhMYB6 和 LhMYB12 正向调节花色素苷生物合成,并决定花色素苷在器官和组织中的特异性积累。

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