首页> 外文期刊>Frontiers in Plant Science >Characterization of Shikonin Derivative Secretion in Lithospermum erythrorhizon Hairy Roots as a Model of Lipid-Soluble Metabolite Secretion from Plants
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Characterization of Shikonin Derivative Secretion in Lithospermum erythrorhizon Hairy Roots as a Model of Lipid-Soluble Metabolite Secretion from Plants

机译:作为植物脂溶性代谢物分泌的模型,紫杉醇毛状根中紫草素衍生物分泌的表征

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Shikonin derivatives are specialized lipophilic metabolites, secreted in abundant amounts from the root epidermal cells of Lithospermum erythrorhizon . Because they have anti-microbial activities, these compounds, which are derivatives of red naphthoquinone, are thought to serve as a chemical barrier for plant roots. The mechanism by which they are secreted from cells is, however, largely unknown. The shikonin production system in L. erythrorhizon is an excellent model for studying the mechanism by which lipophilic compounds are secreted from plant cells, because of the abundant amounts of these compounds produced by L. erythrorhizon , the 0 to 100% inducibility of their production, the light-specific inhibition of production, and the visibility of these products as red pigments. To date, many factors regulating shikonin biosynthesis have been identified, but no mechanism that regulates shikonin secretion without inhibiting biosynthesis has been detected. This study showed that inhibitors of membrane traffic strongly inhibit shikonin secretion without inhibiting shikonin production, suggesting that the secretion of shikonin derivatives into the apoplast utilizes pathways common to the ADP-ribosylation factor/guanine nucleotide exchange factor (ARF/GEF) system and actin filament polymerization, at least in part. These findings provide clues about the machinery involved in secreting lipid-soluble metabolites from cells.
机译:紫草素衍生物是专门的亲脂性代谢物,从紫草紫苏的根表皮细胞中大量分泌。因为它们具有抗微生物活性,所以这些化合物是红色萘醌的衍生物,被认为是植物根部的化学屏障。然而,从细胞分泌它们的机制在很大程度上尚不清楚。 erythrorhizon的紫草素生产系统是研究植物细胞分泌亲脂性化合物的机理的绝佳模型,因为erythrorhizon所产生的这些化合物数量众多,其生产诱导率为0%至100%,特定的光抑制生产,以及这些产品作为红色颜料的可见性。迄今为止,已经发现了许多调控紫草素生物合成的因素,但是没有发现调节紫草素分泌而不抑制生物合成的机制。这项研究表明,膜运输抑制剂强烈抑制紫草素的分泌而不抑制紫草素的产生,这表明紫草素衍生物分泌到质外体中利用了ADP-核糖基化因子/鸟嘌呤核苷酸交换因子(ARF / GEF)系统和肌动蛋白丝的共同途径聚合,至少部分。这些发现为从细胞分泌脂溶性代谢物所涉及的机制提供了线索。

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