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首页> 外文期刊>Industrial Crops and Products >Distribution survey, phytochemical and transcriptome analysis to identify candidate genes involved in biosynthesis of functional components in Zanthoxylum nitidum
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Distribution survey, phytochemical and transcriptome analysis to identify candidate genes involved in biosynthesis of functional components in Zanthoxylum nitidum

机译:分布调查,植物化学和转录组分析,以鉴定Zanthoxylum yitidum功能成分生物合成中涉及的候选基因

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摘要

The dried roots of Zanthoxylum nitidum (Roxb.) DC have been widely used in Chinese medicine for the treatment of rheumatoid arthritis, toothache, stomach ache, bruises, and snakebites. Alkaloid content, particularly for nitidine chloride (NC), is a crucial indicator of herb quality. Abuse of plant sources of Z. nitidum, such as the usage of NC content not adhering to the Chinese Pharmacopoeia specification, has appeared in herb markets. Thus, a distribution survey was conducted on wild samples from 35 sites grown in 5 provinces, including the evaluation of morphological and phytochemical differences (three alkaloids, one flavonoid, and one lignin). Consequently, the surveyed plants were attributed to four types: three species (type I, II, and III) and one variety (type IV). The NC content of most type I, II, and III plants met quality guidelines, however, all three type IV plants from Guangxi Province exhibited low NC content; the use of plants from that area should be carefully considered. To identify the biosynthetic pathway of NC and other active compounds, nine transcriptomes of type III (root, stem and leaf, three replicates for each tissue) and three of type I (three leaf replicates) were performed to mine candidate unigenes. A set of 505,386 unigenes with an average length of 866 bp were identified. Coexpression analysis of tissue expression patterns were used to narrow down the candidate genes. Consequently, 23 candidate unigenes involved in the alkaloid biosynthesis pathway, 38 unigenes in the lignan biosynthesis pathway, and 16unigenes in the flavonoid biosynthesis pathway were screened. The distribution survey and phytochemical and transcriptome analyses conducted in this study provided valuable insights into resource preservation and the potential of molecular breeding to improve the quality of Z. nitidum products.
机译:Zanthoxylum nitidum(Roxb。)Dc的干燥根已被广泛用于中药用于治疗类风湿性关节炎,牙痛,胃疼痛,瘀伤和蛇咬伤。实体含量,特别是对于硝基氯(Nc),是草本质质量的关键指标。滥用植物来源的Z. nitidum,例如NC内容不遵守中国药典规范的使用,已经出现在草药市场。因此,在5个省份生长的35个位点的野生样品上进行了分布调查,包括评估形态学和植物化学差异(三种生物碱,一种类黄酮和一种木质素)。因此,被调查的植物归因于四种类型:三种类型(I型,II和III)和一种品种(IV型)。然而,大多数I型,II和III工厂的NC含量达到质量指南,从广西省的所有三种IV植物都表现出低NC含量;应仔细考虑使用该区域的植物。为了鉴定Nc的生物合成途径和其他活性化合物,对矿物植物进行含量III型(根,茎和叶,每种组织的三种重复)的九型转录组,以及I型(三叶重复)。确定了一组平均长度为866bp的505,386个未成熟。组织表达模式的共表达分析用于缩小候选基因。因此,参与生物碱生物合成途径中的23个候选人,筛选了黄芪生物合成途径中的38个unigenes,并且在黄酮类生物合成途径中的16unigenes。本研究中进行的分布调查和转录体分析提供了有价值的见解,以资源保存和分子育种的潜力提高Z.Nitum产品的质量。

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