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Isolation of a Regulatory Gene of Anthocyanin Biosynthesis in Tuberous Roots of Purple-Fleshed Sweet Potato

机译:紫肉甘薯块茎根中花色苷生物合成调控基因的分离

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摘要

Many transcriptional factors harboring the R2R3-MYB domain, basic helix-loop-helix domain, or WD40 repeats have been identified in various plant species as regulators of flavonoid biosynthesis in flowers, seeds, and fruits. However, the regulatory elements of flavonoid biosynthesis in underground organs have not yet been elucidated. We isolated the novel MYB genes IbMYB1 and IbMYB2s from purple-fleshed sweet potato (Ipomoea batatas L. Lam. cv Ayamurasaki). IbMYB1 was predominantly expressed in the purple flesh of tuberous roots but was not detected (or only scarcely) in other anthocyanin-containing tissues such as nontuberous roots, stems, leaves, or flowers. IbMYB1 was also expressed in the tuberous roots of other purple-fleshed cultivars but not in those of orange-, yellow-, or white-fleshed cultivars. Although the orange- or yellow-fleshed cultivars contained anthocyanins in the skins of their tuberous roots, we could not detect IbMYB1 transcripts in these tissues. These results suggest that IbMYB1 controls anthocyanin biosynthesis specifically in the flesh of tuberous roots. The results of transient and stable transformation experiments indicated that expression of IbMYB1 alone was sufficient for induction of all structural anthocyanin genes and anthocyanin accumulation in the flesh of tuberous roots, as well as in heterologous tissues or heterologous plant species.
机译:在各种植物物种中,已鉴定出具有R2R3-MYB结构域,基本螺旋-环-螺旋结构域或WD40重复序列的许多转录因子,可作为花卉,种子和果实中类黄酮生物合成的调节剂。然而,尚未阐明地下器官中类黄酮生物合成的调控元件。我们从紫色肉甘薯(番薯叶番荔枝cv矢村崎)中分离出新型MYB基因IbMYB1和IbMYB2s。 IbMYB1主要在块茎根部的紫色果肉中表达,但在其他含花青素的组织(例如,无块茎根部,茎,叶或花)中未检测到(或很少发现)。 IbMYB1还表达在其他紫色肉质品种的块茎根中,而不在橙色,黄色或白色肉质品种的块根中表达。尽管桔黄色或橙色的栽培品种在其块根根皮中都含有花青素,但我们在这些组织中无法检测到IbMYB1转录本。这些结果表明,IbMYB1专门在块根根肉中控制花色苷的生物合成。瞬时和稳定转化实验的结果表明,单独表达IbMYB1足以诱导块茎根肉以及异源组织或异源植物物种中的所有结构性花色苷基因和花色苷积累。

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