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基于RNA测序的葱全基因组-洋葱单体附加系甾体皂苷途径的转录组和生化分析

RNA-sequencing-based transcriptome and biochemical analyses of steroidal saponin pathway in a complete set of Allium fistulosum-A. cepa monosomic addition lines.

作者信息

Abdelrahman Mostafa, El-Sayed Magdi, Sato Shusei, Hirakawa Hideki, Ito Shin-Ichi, Tanaka Keisuke, Mine Yoko, Sugiyama Nobuo, Suzuki Yutaka, Yamauchi Naoki, Shigyo Masayoshi

机构信息

Laboratory of Vegetable Crop Science, College of Agriculture, Graduate School of Sciences and Technology for Innovation, Japan.

Botany Department, Faculty of Science, Aswan University, Aswan, Egypt.

出版信息

PLoS One. 2017 Aug 11;12(8):e0181784. doi: 10.1371/journal.pone.0181784. eCollection 2017.

Abstract

The genus Allium is a rich source of steroidal saponins, and its medicinal properties have been attributed to these bioactive compounds. The saponin compounds with diverse structures play a pivotal role in Allium's defense mechanism. Despite numerous studies on the occurrence and chemical structure of steroidal saponins, their biosynthetic pathway in Allium species is poorly understood. The monosomic addition lines (MALs) of the Japanese bunching onion (A. fistulosum, FF) with an extra chromosome from the shallot (A. cepa Aggregatum group, AA) are powerful genetic resources that enable us to understand many physiological traits of Allium. In the present study, we were able to isolate and identify Alliospiroside A saponin compound in A. fistulosum with extra chromosome 2A from shallot (FF2A) and its role in the defense mechanism against Fusarium pathogens. Furthermore, to gain molecular insight into the Allium saponin biosynthesis pathway, high-throughput RNA-Seq of the root, bulb, and leaf of AA, MALs, and FF was carried out using Illumina's HiSeq 2500 platform. An open access Allium Transcript Database (Allium TDB, http://alliumtdb.kazusa.or.jp) was generated based on RNA-Seq data. The resulting assembled transcripts were functionally annotated, revealing 50 unigenes involved in saponin biosynthesis. Differential gene expression (DGE) analyses of AA and MALs as compared with FF (as a control) revealed a strong up-regulation of the saponin downstream pathway, including cytochrome P450, glycosyltransferase, and beta-glucosidase in chromosome 2A. An understanding of the saponin compounds and biosynthesis-related genes would facilitate the development of plants with unique saponin content and, subsequently, improved disease resistance.

摘要

葱属植物是甾体皂苷的丰富来源,其药用特性归因于这些生物活性化合物。结构多样的皂苷化合物在葱属植物的防御机制中起着关键作用。尽管对甾体皂苷的存在和化学结构进行了大量研究,但它们在葱属植物中的生物合成途径仍知之甚少。日本束生葱(A. fistulosum,FF)的单体附加系(MALs)带有来自青葱(A. cepa Aggregatum组,AA)的一条额外染色体,是强大的遗传资源,使我们能够了解葱属植物的许多生理特性。在本研究中,我们能够从带有青葱2A染色体的日本束生葱(FF2A)中分离并鉴定出蒜螺皂苷A皂苷化合物及其在抗镰刀菌病原体防御机制中的作用。此外,为了深入了解葱属植物皂苷生物合成途径,使用Illumina的HiSeq 2500平台对AA、MALs和FF的根、鳞茎和叶进行了高通量RNA测序。基于RNA测序数据生成了一个开放获取的葱属转录数据库(Allium TDB,http://alliumtdb.kazusa.or.jp)。对所得的组装转录本进行功能注释,揭示了50个参与皂苷生物合成的单基因。与FF(作为对照)相比,对AA和MALs进行差异基因表达(DGE)分析发现,皂苷下游途径,包括细胞色素P450、糖基转移酶和β-葡萄糖苷酶在2A染色体上强烈上调。了解皂苷化合物和生物合成相关基因将有助于培育具有独特皂苷含量并进而提高抗病性的植物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b3c0/5553718/281fe00f8aaa/pone.0181784.g001.jpg

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