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通过分析转录组资源鉴定睡茄(印度人参)中的转录因子库:对发育和醉茄内酯代谢调控的研究。

Transcription factor repertoire in Ashwagandha (Withania somnifera) through analytics of transcriptomic resources: Insights into regulation of development and withanolide metabolism.

机构信息

Department of Metabolic and Structural Biology, CSIR-Central Institute of Medicinal and Aromatic Plants (CSIR-CIMAP), Lucknow, 226015, India.

Academy of Scientific and Innovative Research (AcSIR) (An Institution of National Importance by an Act of Parliament),, AcSIR Campus, CSIR-HRDC, Sector-19, Kamla Nehru Nagar, Ghaziabad, Ghaziabad, 201002, Uttar Pradesh, India.

出版信息

Sci Rep. 2017 Nov 30;7(1):16649. doi: 10.1038/s41598-017-14657-6.

Abstract

Transcription factors (TFs) are important regulators of cellular and metabolic functions including secondary metabolism. Deep and intensive RNA-seq analysis of Withania somnifera using transcriptomic databases provided 3532 annotated transcripts of transcription factors in leaf and root tissues, belonging to 90 different families with major abundance for WD-repeat (174 and 165 transcripts) and WRKY (93 and 80 transcripts) in root and leaf tissues respectively, followed by that of MYB, BHLH and AP2-ERF. Their detailed comparative analysis with Arabidopsis thaliana, Capsicum annum, Nicotiana tabacum and Solanum lycopersicum counterparts together gave interesting patterns. However, no homologs for WsWDR representatives, LWD1 and WUSCHEL, were observed in other Solanaceae species. The data extracted from the sequence read archives (SRA) in public domain databases were subjected to re-annotation, re-mining, re-analysis and validation for dominant occurrence of WRKY and WD-repeat (WDR) gene families. Expression of recombinant LWD1 and WUSCHEL proteins in homologous system led to enhancements in withanolide content indicating their regulatory role in planta in the biosynthesis. Contrasting expression profiles of WsLWD1 and WsWUSCHEL provided tissue-specific insights for their participation in the regulation of developmental processes. The in-depth analysis provided first full-spectrum and comparative characteristics of TF-transcripts across plant species, in the perspective of integrated tissue-specific regulation of metabolic processes including specialized metabolism.

摘要

转录因子(TFs)是细胞和代谢功能的重要调节剂,包括次生代谢。使用转录组数据库对睡茄进行深入和密集的 RNA-seq 分析,在叶和根组织中提供了 3532 个注释转录因子的转录本,属于 90 个不同的家族,WD 重复(根和叶组织中分别有 174 和 165 个转录本)和 WRKY(分别有 93 和 80 个转录本)的丰度最大,其次是 MYB、BHLH 和 AP2-ERF。与拟南芥、辣椒、烟草和番茄的详细比较分析给出了有趣的模式。然而,在其他茄科植物中没有观察到 WsWDR 代表 LWD1 和 WUSCHEL 的同源物。从公共数据库的序列读取档案 (SRA) 中提取的数据经过重新注释、重新挖掘、重新分析和验证,以确定 WRKY 和 WD 重复 (WDR) 基因家族的优势发生。在同源系统中表达重组 LWD1 和 WUSCHEL 蛋白导致了与醇含量的增强,表明它们在植物中的生物合成中具有调节作用。WsLWD1 和 WsWUSCHEL 的对比表达谱为它们在发育过程调节中的参与提供了组织特异性的见解。深入的分析提供了第一个全面的和比较的转录因子转录本在植物物种之间的特征,从代谢过程包括特殊代谢的综合组织特异性调节的角度来看。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/537b/5709440/04d135509721/41598_2017_14657_Fig1_HTML.jpg

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