Alkaloid production and response to natural adverse conditions in Peganum harmala: in silico transcriptome analyses.

Q3 Agricultural and Biological Sciences BioTechnologia Pub Date : 2022-01-01 DOI:10.5114/bta.2022.120706
Seyed Mehdi Jazayeri, Mahtab Pooralinaghi, Yenny Torres-Navarrete, Byron Oviedo-Bayas, Ítalo Espinoza Guerra, Dario Herrera Jácome, César Quinaluisa Morán, Carlos Salas Macias, Karime Montes Escobar, Seyed Mohammad Hossein Ale Seyed Ghafoor, Gholamhasan Veiskarami, Pouria Jandaghi, Ronald Oswaldo Villamar Torres
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Abstract

Peganum harmala is a valuable wild plant that grows and survives under adverse conditions and produces pharmaceutical alkaloid metabolites. Using different assemblers to develop a transcriptome improves the quality of assembled transcriptome. In this study, a concrete and accurate method for detecting stress-responsive transcripts by comparing stress-related gene ontology (GO) terms and public domains was designed. An integrated transcriptome for P. harmala including 42 656 coding sequences was created by merging de novo assembled transcriptomes. Around 35 000 transcripts were annotated with more than 90% resemblance to three closely related species of Citrus, which confirmed the robustness of the assembled transcriptome; 4853 stress-responsive transcripts were identified. CYP82 involved in alkaloid biosynthesis showed a higher number of transcripts in P. harmala than in other plants, indicating its diverse alkaloid biosynthesis attributes. Transcription factors (TFs) and regulatory elements with 3887 transcripts comprised 9% of the transcriptome. Among the TFs of the integrated transcriptome, cystein2/histidine2 (C2H2) and WD40 repeat families were the most abundant. The Kyoto Encyclopedia of Genes and Genomes (KEGG) MAPK (mitogen-activated protein kinase) signaling map and the plant hormone signal transduction map showed the highest assigned genes to these pathways, suggesting their potential stress resistance. The P. harmala whole-transcriptome survey provides important resources and paves the way for functional and comparative genomic studies on this plant to discover stress-tolerance-related markers and response mechanisms in stress physiology, phytochemistry, ecology, biodiversity, and evolution. P. harmala can be a potential model for studying adverse environmental cues and metabolite biosynthesis and a major source for the production of various alkaloids.

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生物碱的产生及其对自然不利条件的响应:转录组分析。
骆驼蓬是一种在恶劣条件下生长和生存的珍贵野生植物,能产生药用生物碱代谢物。使用不同的组装体来构建转录组可以提高组装转录组的质量。在本研究中,设计了一种具体而准确的方法,通过比较压力相关基因本体(GO)术语和公共域来检测压力响应转录本。通过合并重组转录组,获得了包含42 656个编码序列的整合转录组。大约35000个转录本与柑橘的3个近缘种相似性超过90%,这证实了组装转录组的稳健性;鉴定了4853个应激反应转录本。与生物碱合成相关的CYP82基因在假楠中转录量高于其他植物,表明其生物碱合成的多样性。转录因子和调控元件共3887个转录本,占转录组的9%。在整合转录组的TFs中,cystein2/histidine2 (C2H2)和WD40重复家族最为丰富。京都基因与基因组百科(KEGG)的MAPK(丝裂原活化蛋白激酶)信号图谱和植物激素信号转导图谱显示了这些途径中分配最多的基因,表明它们具有潜在的抗逆性。全转录组调查为该植物的功能和比较基因组研究提供了重要的资源,为发现逆境生理、植物化学、生态学、生物多样性和进化中的逆境耐受性相关标记和响应机制铺平了道路。P. harmala可以成为研究不利环境因素和代谢物生物合成的潜在模型,也是生产各种生物碱的主要来源。
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来源期刊
BioTechnologia
BioTechnologia Agricultural and Biological Sciences-Plant Science
CiteScore
1.60
自引率
0.00%
发文量
8
审稿时长
8 weeks
期刊介绍: BIOTECHNOLOGIA – a high standard, peer-reviewed, quarterly magazine, providing a medium for the rapid publication of research reports and review articles on novel and innovative aspects of biotechnology, computational biology and bionanotechnology.
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