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Identification, functional characterization and developmental regulation of sesquiterpene synthases from sunflower capitate glandular trichomes

机译:向日葵头状腺毛的倍半萜烯合酶的鉴定,功能表征和发育调控

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Background Sesquiterpene lactones are characteristic metabolites of Asteraceae (or Compositae) which often display potent bioactivities and are sequestered in specialized organs such as laticifers, resin ducts, and trichomes. For characterization of sunflower sesquiterpene synthases we employed a simple method to isolate pure trichomes from anther appendages which facilitated the identification of these genes and investigation of their enzymatic functions and expression patterns during trichome development. Results Glandular trichomes of sunflower ( Helianthus annuus L.) were isolated, and their RNA was extracted to investigate the initial steps of sesquiterpene lactone biosynthesis. Reverse transcription-PCR experiments led to the identification of three sesquiterpene synthases. By combination of in vitro and in vivo characterization of sesquiterpene synthase gene products in Escherichia coli and Saccharomyces cerevisiae , respectively, two enzymes were identified as germacrene A synthases, the key enzymes of sesquiterpene lactone biosynthesis. Due to the very low in vitro activity, the third enzyme was expressed in vivo in yeast as a thioredoxin-fusion protein for functional characterization. In in vivo assays, it was identified as a multiproduct enzyme with the volatile sesquiterpene hydrocarbon δ-cadinene as one of the two main products with α-muuorlene, β-caryophyllene, α-humulene and α-copaene as minor products. The second main compound remained unidentified. For expression studies, glandular trichomes from the anther appendages of sunflower florets were isolated in particular developmental stages from the pre- to the post-secretory phase. All three sesquiterpene synthases were solely upregulated during the biosynthetically active stages of the trichomes. Expression in different aerial plant parts coincided with occurrence and maturity of trichomes. Young roots with root hairs showed expression of the sesquiterpene synthase genes as well. Conclusion This study functionally identified sesquiterpene synthase genes predominantly expressed in sunflower trichomes. Evidence for the transcriptional regulation of sesquiterpene synthase genes in trichome cells suggest a potential use for these specialized cells for the identification of further genes involved in the biosynthesis, transport, and regulation of sesquiterpene lactones.
机译:背景技术倍半萜内酯是菊苣科(或菊科)的特征性代谢产物,经常表现出强大的生物活性,并被隔离在特定的器官中,例如乳胶,树脂管和毛状体。为了表征向日葵倍半萜烯合酶,我们采用了一种简单的方法从花药附属物中分离纯毛状体,这有助于这些基因的鉴定以及在毛状体发育过程中研究其酶促功能和表达方式。结果分离出向日葵的三角毛,提取其RNA,研究倍半萜烯内酯生物合成的起始步骤。逆转录-PCR实验导致鉴定出三种倍半萜烯合酶。通过结合大肠杆菌和酿酒酵母中倍半萜烯合酶基因产物的体外和体内特性,鉴定出两种酶称为倍半萜烯A合酶,这是倍半萜烯内酯生物合成的关键酶。由于体外活性非常低,因此第三种酶在体内以硫氧还蛋白融合蛋白的形式在酵母中体内表达,以进行功能表征。在体内测定中,它被鉴定为多产物酶,其中挥发性倍半萜碳氢化合物δ-cadinene是两种主要产物之一,其中α-茂烯,β-石竹烯,α-hu烯和α-copaene是次要产物。第二主要化合物仍未确定。为了进行表达研究,从分泌前到分泌后的特定发育阶段,从向日葵小花的花药附属物中分离出腺毛。在毛状体的生物合成活性阶段,所有三个倍半萜烯合酶仅被上调。在不同的空中植物部分中表达与毛状体的发生和成熟相吻合。具有根毛的幼根也显示倍半萜合酶基因的表达。结论本研究从功能上鉴定了主要在向日葵毛状体中表达的倍半萜合酶基因。在毛状体细胞中倍半萜合酶基因的转录调控的证据表明,这些特化细胞可能用于鉴定参与倍半萜烯内酯的生物合成,运输和调控的其他基因。

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