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Cellular and sub-cellular organisation of the monoterpenoid indole alkaloid pathway in Catharanthus roseus

机译:在Catharanthus Roseus的单萜类吲哚生物碱途径的细胞和亚细胞组织

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The Madagascar periwinkle (Catha-ranthus roseus) monoterpene indole alkaloids (MIAs),either as (hetero)dimers (vinblastine,vincristine) or as monomers (ajmalicine) are valuable pharmaceuticals with antitumoral and hypotensive properties.The biosynthetic pathway of these secondary metabolites involves several subpathways (so-called indole,methylerythritol phosphate,secoiridoid-monoterpenoids,and the MIA pathway itself).So far,16 cDNA sequences with direct involvement in the pathway have been obtained and some additional enzymatic activities have been characterised.Metabolomic,tran-scriptomic and proteomic studies have revealed that this pathway presents a high degree of spatial organisation at the organ,cellular and sub-cellular levels.This paper reviews the evidence on the spatial organisation of the MIA pathway at various levels of resolution in terms of the following topics.(1) The organ-specific distribution of MIAs,related genes,related enzymes and related enzymatic activities,mainly focussing on repartition in roots versus aerial organs.(2) The cell-specific occurrence of MIA-related gene expression identified by in situ hybridisation and corresponding protein accumulation identified by immunolocalisation,with particular emphasis on the well-characterised multi-cellular compart-mentation in aerial organs.In situ hybridisation revealed that the nine transcripts studied could be classified into three populations according to their position in the pathway (early-,intermediate-and late-step genes) and to their cell-specific expression patterns (internal phloem parenchyma,epidermis,laticifers/idioblasts).(3) The still poorly characterised sub-cellular localisation of MIA-related enzymes.Finally,these results are compared with the situation in other families producing other types of alkaloids,and future prospects are discussed.
机译:Madagascar Periwinkle(Catha-Ranthus roseus)单萜吲哚生物碱(MIAS),如(杂种)二聚体(长植物,长春螯合体)或单体(Ajmalicine)是具有抗肿瘤和低度特性的有价值的药物。这些次级代谢物的生物合成途径涉及几种细胞道(所谓的吲哚,磷酸盐磷酸盐,secoiridoid-monoterpenoids和Mia途径本身)。得很远,已经获得了途径直接受累的16个cDNA序列,并表现了一些额外的酶活性.Metabolomic,Tran - 谱系和蛋白质组学研究表明,该途径在器官,细胞和次蜂窝水平上呈现出高度的空间组织。本文审查了在以下方面解决各种分辨率的MIA途径空间组织的证据主题。(1)主要乳房,相关基因,相关酶及相关酶活性的器官特异性分布,主要LY在根系中重新分娩与空中器官。(2)通过免疫循环化鉴定的原位杂交和相应的蛋白质积累鉴定的细胞特异性发生的细胞特异性发生,特别强调良好的多细胞层在空中器官中的介入。在原位杂交中揭示了所研究的九份转录物可以根据其在途径(早期,中间 - 和晚期基因)和其细胞特异性表达模式中的位置分为三种群体(内部韧皮薄壁症,表皮,含乳草剂/鉴定)。(3)仍然存在差异较差的MIA相关酶的亚细胞定位。最后,这些结果与产生其他类型生物碱的其他家庭的情况进行比较,并且讨论了未来的前景。

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