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Cytological development and sesquiterpene lactone secretion in capitate glandular trichomes of sunflower

机译:向日葵头状腺毛状体的细胞学发育和倍半萜内酯分泌

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The secretion of sesquiterpene lactones (STL) in capitate glandular trichomes from the anther appendages of Helianthus annuus L. (Asteraceae) was observed by light and fluorescence microscopy and HPLC analysis. Disk flowers within the sunflower capitulum showed the known ontogenetic progression from the centre to the margin. During development of the florets, the trichomes in the anther appendages secreted their metabolites into the subcuticular secretion storage space in front of the two apical cells. All stages of forming the cuticular globe, from the pre-secretory to the post-secretory phase, could be observed microscopically and secretory activity was simultaneously monitored. Six germacrolides and heliangolides of known structure were selected for quantitative analysis. The increase in STL content during extension of the subcuticular space was monitored by HPLC analysis. Thereby, the start and termination of STL biosynthesis was defined in relation to other developmental stages of floret ontogenesis, particularly, the pollen formation. Part of the secreted material showed autofluorescence which could be attributed to a hydroxy-trimethoxy-flavone, as determined by NMR and mass spectroscopy. The anther trichomes were cytologically and chemically similar to foliar glandular trichomes of sunflower and represent the multicellular capitate glandular trichome type common to many Asteraceae. The ease with which anther trichomes of H. annuus can be harvested and analyzed suggests that they can provide a valuable model system for investigation of STL and flavonoid metabolism in Asteraceae.
机译:通过光镜和荧光镜检及HPLC分析,观察到人头葵的花药附属物在人头状腺毛中的倍半萜内酯(STL)的分泌。向日葵花冠内的圆盘花显示出从中心到边缘的已知的发育发生过程。在小花发育期间,花药附属物中的毛状体将其代谢物分泌到两个顶细胞前面的皮下分泌储存空间中。从分泌前阶段到分泌后阶段,可以观察到形成角质层球囊的所有阶段,并同时监测分泌活动。选择了六种结构已知的杀菌剂和六聚体进行定量分析。通过HPLC分析监测皮下间隙扩展过程中STL含量的增加。因此,STL生物合成的开始和终止与小花本体发育的其他发育阶段,特别是花粉形成有关。通过NMR和质谱测定,部分分泌的物质显示出自发荧光,这可以归因于羟基-三甲氧基-黄酮。花药的毛状体与向日葵的叶状腺毛状体在细胞学和化学上相似,代表了许多菊科常见的多细胞头状腺毛状体。收获和分析黄花苜蓿毛状体的简便性表明,它们可以为研究菊科植物的STL和类黄酮代谢提供有价值的模型系统。

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