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马兜铃和藜芦的比较转录组分析揭示了多个参与甾体生物碱生物合成的候选基因。

Comparative transcriptome analysis of Veratrum maackii and Veratrum nigrum reveals multiple candidate genes involved in steroidal alkaloid biosynthesis.

机构信息

Jilin Provincial Key Laboratory of Agricultural Biotechnology, Jilin Academy of Agricultural Sciences, Changchun, 130033, Jilin Province, People's Republic of China.

College of Agricultural Sciences, Yanbian University, Yanji, 133000, Jilin Province, People's Republic of China.

出版信息

Sci Rep. 2023 May 21;13(1):8198. doi: 10.1038/s41598-023-35429-5.

Abstract

Veratrum (Melanthiaceae; Liliales) is a genus of perennial herbs known for the production of unique bioactive steroidal alkaloids. However, the biosynthesis of these compounds is incompletely understood because many of the downstream enzymatic steps have yet to be resolved. RNA-Seq is a powerful method that can be used to identify candidate genes involved in metabolic pathways by comparing the transcriptomes of metabolically active tissues to controls lacking the pathway of interest. The root and leaf transcriptomes of wild Veratrum maackii and Veratrum nigrum plants were sequenced and 437,820 clean reads were assembled into 203,912 unigenes, 47.67% of which were annotated. We identified 235 differentially expressed unigenes potentially involved in the synthesis of steroidal alkaloids. Twenty unigenes, including new candidate cytochrome P450 monooxygenases and transcription factors, were selected for validation by quantitative real-time PCR. Most candidate genes were expressed at higher levels in roots than leaves but showed a consistent profile across both species. Among the 20 unigenes putatively involved in the synthesis of steroidal alkaloids, 14 were already known. We identified three new CYP450 candidates (CYP76A2, CYP76B6 and CYP76AH1) and three new transcription factor candidates (ERF1A, bHLH13 and bHLH66). We propose that ERF1A, CYP90G1-1 and CYP76AH1 are specifically involved in the key steps of steroidal alkaloid biosynthesis in V. maackii roots. Our data represent the first cross-species analysis of steroidal alkaloid biosynthesis in the genus Veratrum and indicate that the metabolic properties of V. maackii and V. nigrum are broadly conserved despite their distinct alkaloid profiles.

摘要

藜芦科(Melanthiaceae;百合目)是一个以产生独特生物活性甾体生物碱而闻名的多年生草本植物属。然而,由于许多下游酶促步骤尚未解决,这些化合物的生物合成仍不完全清楚。RNA-Seq 是一种强大的方法,通过比较代谢活跃组织和缺乏感兴趣途径的对照组织的转录组,可以识别参与代谢途径的候选基因。野生藜芦(Veratrum maackii)和黑藜芦(Veratrum nigrum)植物的根和叶转录组进行了测序,共组装出 203912 条 unigenes,其中 437820 条 clean reads 被组装成 203912 条 unigenes,47.67%被注释。我们鉴定出 235 个差异表达的 unigenes,这些 unigenes可能参与甾体生物碱的合成。选择 20 个 unigenes,包括新的候选细胞色素 P450 单加氧酶和转录因子,通过定量实时 PCR 进行验证。大多数候选基因在根部的表达水平高于叶片,但在两种物种中表现出一致的表达模式。在推测参与甾体生物碱合成的 20 个 unigenes中,已有 14 个被鉴定出来。我们鉴定了三个新的 CYP450 候选基因(CYP76A2、CYP76B6 和 CYP76AH1)和三个新的转录因子候选基因(ERF1A、bHLH13 和 bHLH66)。我们提出 ERF1A、CYP90G1-1 和 CYP76AH1 特异性参与了 V. maackii 根部甾体生物碱生物合成的关键步骤。我们的数据代表了藜芦属甾体生物碱生物合成的首次跨物种分析,并表明尽管 V. maackii 和 V. nigrum 的生物碱谱不同,但它们的代谢特性广泛保守。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a551/10200796/a8eb4963838a/41598_2023_35429_Fig1_HTML.jpg

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