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首页> 外文期刊>Scientific reports. >Spatial transcriptome analysis provides insights of key gene(s) involved in steroidal saponin biosynthesis in medicinally important herb Trillium govanianum
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Spatial transcriptome analysis provides insights of key gene(s) involved in steroidal saponin biosynthesis in medicinally important herb Trillium govanianum

机译:空间转录组分析提供了甾体皂苷生物合成中的关键基因的洞察,药物重要的草药毒药植物蛋白

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Trillium govanianum, an endangered medicinal herb native to the Himalaya, is less studied at the molecular level due to the non-availability of genomic resources. To facilitate the basic understanding of the key genes and regulatory mechanism of pharmaceutically important biosynthesis pathways, first spatial transcriptome sequencing of T. govanianum was performed. 151,622,376 (~11.5?Gb) high quality reads obtained using paired-end Illumina sequencing were de novo assembled into 69,174 transcripts. Functional annotation with multiple public databases identified array of genes involved in steroidal saponin biosynthesis and other secondary metabolite pathways including brassinosteroid, carotenoid, diterpenoid, flavonoid, phenylpropanoid, steroid and terpenoid backbone biosynthesis, and important TF families (bHLH, MYB related, NAC, FAR1, bZIP, B3 and WRKY). Differentially expressed large number of transcripts, together with CYPs and UGTs suggests involvement of these candidates in tissue specific expression. Combined transcriptome and expression analysis revealed that leaf and fruit tissues are the main site of steroidal saponin biosynthesis. In conclusion, comprehensive genomic dataset created in the current study will serve as a resource for identification of potential candidates for genetic manipulation of targeted bioactive metabolites and also contribute for development of functionally relevant molecular marker resource to expedite molecular breeding and conservation efforts in T. govanianum.
机译:由于基因组资源的不可用性,Trillium Govanianum是一种濒临灭绝的药草,其原产于喜马拉雅岛的濒临灭绝的药用草药。为了促进对药学上重要的生物合成途径的关键基因和调节机制的基本理解,进行了T.Govanianum的第一种空间转录组测序。使用配对末端illumina测序获得的高质量读数为151,622,376(〜11.5〜11b),将De Novo组装成69,174转录物。具有多个公共数据库的功能注释鉴定了甾体皂苷生物合成中涉及的基因阵列和其他次生代谢态途径,包括芸苔类固醇,类胡萝卜素,二萜,类黄酮,苯丙醇,类固醇和萜类骨髓骨架生物合成,以及重要的TF系列(BHLH,MYB相关,NAC,NAC,NAC,FAR1 ,bzip,b3和wrky)。差异化表达大量的转录物,与CYPS和UGT一起表明这些候选者参与组织特异性表达。联合转录组和表达分析显示,叶子和水果组织是甾体皂苷生物合成的主要部位。总之,目前研究中创建的综合基因组数据集将作为鉴定潜在的生物活性代谢物的遗传操作潜在候选人的资源,也有助于开发功能相关的分子标记资源,以加快T. Govanianum的分子育种和保护努力。 。

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