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首页> 外文期刊>Frontiers in Plant Science >Genome-Wide Transcriptional Excavation of Dipsacus asperoides Unmasked both Cryptic Asperosaponin Biosynthetic Genes and SSR Markers
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Genome-Wide Transcriptional Excavation of Dipsacus asperoides Unmasked both Cryptic Asperosaponin Biosynthetic Genes and SSR Markers

机译: Dipsacus asperoides 的全基因组转录挖掘未揭示隐性天冬酰胺皂苷的生物合成基因和SSR标记

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Background: Dipsacus asperoides is a traditional Chinese medicinal crop. The root is generally used as a medicine and is frequently prescribed by Chinese doctors for the treatment of back pain, limb paralysis, flutter trauma, tendon injuries, and fractures. With the rapid development of bioinformatics, research has been focused on this species at the gene or molecular level. For purpose of fleshing out genome information about D. asperoides , in this paper we conducted transcriptome analysis of this species. Principal Findings: To date, many genes encoding enzymes involved in the biosynthesis of triterpenoid saponins in D .asperoides have not been elucidated. Illumina paired-end sequencing was employed to probe D. asperoides 's various enzymes associated with the relevant mesostate. A total of 30, 832,805 clean reads and de novo spliced 43,243 unigenes were obtained. Of all unigenes, only 8.27% (3578) were successfully annotated in total of seven public databases: Nr, Nt, Swiss-Prot, GO, KOG, KEGG, and Pfam, which might be attributed to the poor studies on D. asperoides . The candidate genes encoding enzymes involved in triterpenoid saponin biosynthesis were identified and experimentally verified by reverse transcription qPCR, encompassing nine cytochrome P450s and 17 UDP-glucosyltransferases. Specifically, unearthly putative genes involved in the glycosylation of hederagenin were acquired. Simultaneously, 4490 SSRs from 43,243 examined sequences were determined via bioinformatics analysis. Conclusion: This study represents the first report on the use of the Illumina sequence platform on this crop at the transcriptome level. Our findings of candidate genes encoding enzymes involved in Dipsacus saponin VI biosynthes is provide novel information in efforts to further understand the triterpenoid metabolic pathway on this species. The initial genetics resources in this study will contribute significantly to the genetic breeding program of D. asperoides , and are beneficial for clinical diagnosis and treatment.
机译:背景:Dispacus asperoides是一种传统的中药作物。根通常被用作药物,中国医生经常开这种药,用于治疗背痛,四肢瘫痪,扑动外伤,肌腱损伤和骨折。随着生物信息学的迅速发展,研究已集中在基因或分子水平上。为了充实有关D. asperoides的基因组信息,在本文中,我们对该物种进行了转录组分析。主要发现:迄今为止,尚未阐明许多编码与拟南芥中三萜皂苷生物合成有关的酶的基因。 Illumina的配对末端测序被用来探测D. asperoides与相关介观状态相关的各种酶。总共获得了30,832,805次纯读和从头剪接的43,243个单基因。在所有单基因中,只有8.27%(3578)被成功注释了七个公共数据库:Nr,Nt,Swiss-Prot,GO,KOG,KEGG和Pfam,这可能归因于对D. asperoides的不良研究。鉴定并编码涉及三萜皂苷生物合成的酶的候选基因,并通过反转录qPCR进行实验验证,涵盖9种细胞色素P450和17种UDP-葡萄糖基转移酶。具体而言,获得了涉及二十二碳三烯糖原的糖基化的超常推定基因。同时,通过生物信息学分析,从43,243个检查序列中确定了4490个SSR。结论:这项研究代表了在转录组水平上对该作物使用Illumina序列平台的第一份报告。我们对参与Dipsacus saponin VI生物合成的酶进行编码的候选基因的发现为进一步了解该物种的三萜类代谢途径提供了新的信息。这项研究中的初始遗传资源将对D. asperoides的遗传育种计划做出重大贡献,并有助于临床诊断和治疗。

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