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药用植物长春花的叶片异形体细胞与抗逆性和生物碱代谢有关。

The leaf idioblastome of the medicinal plant Catharanthus roseus is associated with stress resistance and alkaloid metabolism.

机构信息

CIBIO, Centro de Investigação em Biodiversidade e Recursos Genéticos, InBIO Laboratório Associado, Campus de Vairão, Universidade do Porto, 4485-661 Vairão, Portugal.

BIOPOLIS Program in Genomics, Biodiversity and Land Planning, CIBIO, Campus de Vairão, 4485-661 Vairão, Portugal.

出版信息

J Exp Bot. 2024 Jan 1;75(1):274-299. doi: 10.1093/jxb/erad374.

Abstract

Catharanthus roseus leaves produce a range of monoterpenoid indole alkaloids (MIAs) that include low levels of the anticancer drugs vinblastine and vincristine. The MIA pathway displays a complex architecture spanning different subcellular and cell type localizations, and is under complex regulation. As a result, the development of strategies to increase the levels of the anticancer MIAs has remained elusive. The pathway involves mesophyll specialized idioblasts where the late unsolved biosynthetic steps are thought to occur. Here, protoplasts of C. roseus leaf idioblasts were isolated by fluorescence-activated cell sorting, and their differential alkaloid and transcriptomic profiles were characterized. This involved the assembly of an improved C. roseus transcriptome from short- and long-read data, IDIO+. It was observed that C. roseus mesophyll idioblasts possess a distinctive transcriptomic profile associated with protection against biotic and abiotic stresses, and indicative that this cell type is a carbon sink, in contrast to surrounding mesophyll cells. Moreover, it is shown that idioblasts are a hotspot of alkaloid accumulation, suggesting that their transcriptome may hold the key to the in-depth understanding of the MIA pathway and the success of strategies leading to higher levels of the anticancer drugs.

摘要

长春花叶片产生一系列单萜吲哚生物碱(MIAs),其中包括低水平的抗癌药物长春碱和长春新碱。MIA 途径具有跨越不同亚细胞和细胞类型定位的复杂结构,并且受到复杂的调节。因此,开发提高抗癌 MIA 水平的策略仍然难以捉摸。该途径涉及到叶肉特化的异形细胞,人们认为晚期未解决的生物合成步骤就发生在这里。在这里,通过荧光激活细胞分选分离长春花叶片异形细胞的原生质体,并对其差异生物碱和转录组谱进行了表征。这涉及到使用短读长和长读长数据组装改良的长春花转录组,即 IDIO+。观察到长春花叶肉异形细胞具有独特的转录组谱,与生物和非生物胁迫的保护有关,并表明这种细胞类型是碳汇,与周围的叶肉细胞形成对比。此外,研究表明异形细胞是生物碱积累的热点,这表明它们的转录组可能是深入了解 MIA 途径以及成功实施提高抗癌药物水平策略的关键。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/631e/10735432/7c2e17ad5800/erad374_fig1.jpg

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