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对三萜骨架合成途径中 ATP 结合盒转运蛋白的全基因组分析揭示丹参中与生物活性代谢产物运输相关的基因

Genome-wide analysis of ATP-binding cassette transporter provides insight to genes related to bioactive metabolite transportation in Salvia miltiorrhiza.

机构信息

Engineering Research Center of Chinese Medicine Resource, Ministry of Education, Institute of Medicinal Plant Development, Chinese Academy of Medical Sciences & Peking Union Medical College, Beijing, China.

出版信息

BMC Genomics. 2021 May 1;22(1):315. doi: 10.1186/s12864-021-07623-0.

Abstract

BACKGROUND

ATP-binding cassette (ABC) transporters have been found to play important roles in metabolic transport in plant cells, influencing subcellular compartmentalisation and tissue distribution of these metabolic compounds. Salvia miltiorrhiza Bunge, known as Danshen in traditional Chinese medicine, is a highly valued medicinal plant used to treat cardiovascular and cerebrovascular diseases. The dry roots and rhizomes of S. miltiorrhiza contain biologically active secondary metabolites of tanshinone and salvianolic acid. Given an assembled and annotated genome and a set of transcriptome data of S. miltiorrhiza, we analysed and identified the candidate genes that likely involved in the bioactive metabolite transportation of this medicinal plant, starting with the members of the ABC transporter family.

RESULTS

A total of 114 genes encoding ABC transporters were identified in the genome of S. miltiorrhiza. All of these ABC genes were divided into eight subfamilies: 3ABCA, 31ABCB, 14ABCC, 2ABCD, 1ABCE, 7ABCF, 46ABCG, and 10 ABCI. Gene expression analysis revealed tissue-specific expression profiles of these ABC transporters. In particular, we found 18 highly expressed transporters in the roots of S. miltiorrhiza, which might be involved in transporting the bioactive compounds of this medicinal plant. We further investigated the co-expression profiling of these 18 genes with key enzyme genes involved in tanshinone and salvianolic acid biosynthetic pathways using quantitative reverse transcription polymerase chain reaction (RT-qPCR). From this RT-qPCR validation, we found that three ABC genes (SmABCG46, SmABCG40, and SmABCG4) and another gene (SmABCC1) co-expressed with the key biosynthetic enzymes of these two compounds, respectively, and thus might be involved in tanshinone and salvianolic acid transport in root cells. In addition, we predicted the biological functions of S. miltiorrhiza ABC transporters using phylogenetic relationships and analysis of the transcriptome to find biological functions.

CONCLUSIONS

Here, we present the first systematic analysis of ABC transporters in S. miltiorrhiza and predict candidate transporters involved in bioactive compound transportation in this important medicinal plant. Using genome-wide identification, transcriptome profile analysis, and phylogenetic relationships, this research provides a new perspective on the critical functions of ABC transporters in S. miltiorrhiza.

摘要

背景

ATP 结合盒(ABC)转运蛋白已被发现在植物细胞的代谢转运中发挥重要作用,影响这些代谢化合物的亚细胞区室化和组织分布。丹参是一种极具价值的药用植物,在中国传统医学中被称为丹参,用于治疗心脑血管疾病。丹参的干根和根茎含有丹参酮和丹参酸的生物活性次生代谢物。基于丹参的组装和注释基因组以及一组转录组数据,我们分析并鉴定了可能参与这种药用植物生物活性代谢物转运的候选基因,从 ABC 转运蛋白家族成员开始。

结果

在丹参基因组中鉴定出 114 个编码 ABC 转运蛋白的基因。所有这些 ABC 基因分为八个亚家族:3ABCA、31ABCB、14ABCC、2ABCD、1ABCE、7ABCF、46ABCG 和 10ABCI。基因表达分析显示这些 ABC 转运蛋白具有组织特异性表达谱。特别是,我们在丹参的根部发现了 18 个高表达的转运蛋白,它们可能参与了这种药用植物生物活性化合物的转运。我们进一步使用定量逆转录聚合酶链反应(RT-qPCR)研究了这 18 个基因与丹参酮和丹参酸生物合成途径关键酶基因的共表达谱。通过 RT-qPCR 验证,我们发现三个 ABC 基因(SmABCG46、SmABCG40 和 SmABCG4)和另一个基因(SmABCC1)分别与这两种化合物的关键生物合成酶共表达,因此可能参与了丹参酮和丹参酸在根细胞中的转运。此外,我们使用系统发育关系和转录组分析预测了丹参 ABC 转运蛋白的生物学功能,以找到生物学功能。

结论

本文首次对丹参中的 ABC 转运蛋白进行了系统分析,并预测了参与这种重要药用植物生物活性化合物转运的候选转运蛋白。通过全基因组鉴定、转录组谱分析和系统发育关系,本研究为 ABC 转运蛋白在丹参中的关键功能提供了新的视角。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/18d2/8088630/978c18a3adfc/12864_2021_7623_Fig1_HTML.jpg

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