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具热生成能力的秀丽疆南星的转录组分析揭示了花香产生的分子成分。

Transcriptome analysis of thermogenic Arum concinnatum reveals the molecular components of floral scent production.

作者信息

Onda Yoshihiko, Mochida Keiichi, Yoshida Takuhiro, Sakurai Tetsuya, Seymour Roger S, Umekawa Yui, Pirintsos Stergios Arg, Shinozaki Kazuo, Ito Kikukatsu

机构信息

1] Biomass Research Platform Team, Biomass Engineering Program Cooperation Division, RIKEN Center for Sustainable Resource Science, Kanagawa, Japan [2] Kihara Institute for Biological Research, Yokohama City University, Kanagawa, Japan.

1] Biomass Research Platform Team, Biomass Engineering Program Cooperation Division, RIKEN Center for Sustainable Resource Science, Kanagawa, Japan [2] Kihara Institute for Biological Research, Yokohama City University, Kanagawa, Japan [3] Gene Discovery Research Group, RIKEN Center for Sustainable Resource Science, Kanagawa, Japan.

出版信息

Sci Rep. 2015 Mar 4;5:8753. doi: 10.1038/srep08753.

Abstract

Several plant species can generate enough heat to increase their internal floral temperature above ambient temperature. Among thermogenic plants, Arum concinnatum shows the highest respiration activity during thermogenesis. However, an overall understanding of the genes related to plant thermogenesis has not yet been achieved. In this study, we performed de novo transcriptome analysis of flower organs in A. concinnatum. The de novo transcriptome assembly represented, in total, 158,490 non-redundant transcripts, and 53,315 of those showed significant homology with known genes. To explore genes associated with thermogenesis, we filtered 1266 transcripts that showed a significant correlation between expression pattern and the temperature trend of each sample. We confirmed five putative alternative oxidase transcripts were included in filtered transcripts as expected. An enrichment analysis of the Gene Ontology terms for the filtered transcripts suggested over-representation of genes involved in 1-deoxy-D-xylulose-5-phosphate synthase (DXS) activity. The expression profiles of DXS transcripts in the methyl-D-erythritol 4-phosphate (MEP) pathway were significantly correlated with thermogenic levels. Our results suggest that the MEP pathway is the main biosynthesis route for producing scent monoterpenes. To our knowledge, this is the first report describing the candidate pathway and the key enzyme for floral scent production in thermogenic plants.

摘要

几种植物物种能够产生足够的热量,使它们内部的花朵温度高于环境温度。在产热植物中,秀丽魔芋在产热过程中表现出最高的呼吸活性。然而,对于与植物产热相关的基因尚未有全面的了解。在本研究中,我们对秀丽魔芋的花器官进行了从头转录组分析。从头转录组组装总共产生了158,490个非冗余转录本,其中53,315个与已知基因具有显著同源性。为了探索与产热相关的基因,我们筛选出了1266个转录本,这些转录本在表达模式与每个样本的温度趋势之间显示出显著相关性。正如预期的那样,我们证实筛选出的转录本中包含五个假定的交替氧化酶转录本。对筛选出的转录本进行基因本体术语富集分析表明,参与1-脱氧-D-木酮糖-5-磷酸合酶(DXS)活性的基因存在过度表达。甲基-D-赤藓糖醇-4-磷酸(MEP)途径中DXS转录本的表达谱与产热水平显著相关。我们的结果表明,MEP途径是产生香味单萜的主要生物合成途径。据我们所知,这是第一份描述产热植物花香产生的候选途径和关键酶的报告。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/76eb/5390080/202a9e1066c6/srep08753-f1.jpg

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