整合 RNA-Seq 和代谢物分析揭示草本牡丹的关键花香生物合成基因

S. Kimani, Shuxian Wang, Jinyi Xie, Tingting Bao, Xiaotong Shan, Hongjie Li, Adnan, Li Wang, Xiang Gao, Yueqing Li
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引用次数: 0

摘要

花香是草本牡丹(Paeonia lactiflora Pall.)的一个重要且遗传复杂的性状;然而,与代谢和调控网络相关的特定基因仍然鲜有研究。我们的研究整合了代谢物分析和 RNA 测序,以筛选花香生物合成基因。因此,通过顶空采集结合特定栽培品种的 GC-MS 分析,确定的主要分子有香叶醇、β-石竹烯、2-苯乙醇(2-PE)、香茅醇和 1,8-蒎烯。在对乳花草转录组进行组装和注释后,确定了与萜类化合物和 2-PE 生物合成有关的基因。确定了 TPS-a 和 TPS-b 支系中的 8 个被子植物特异性萜烯合成酶(TPSs),以及与 2-PE 合成有关的酶,如芳香族氨基酸脱羧酶(AADC)、苯乙醛还原酶(PAR)和香叶醇还原酶(GER)。通过对 PlPAR1 和 PlGER1 所编码的酶进行生化分析,发现它们能从苯乙醛(PAld)中生成 2-PE。AADC1 的配对比对发现了一个缺少 124 bp 片段的剪接变体,从而突显了替代剪接在调节花香成分中可能发挥的作用。这项研究深入揭示了芍药类群中萜类化合物和 2-PE 的分子水平生物合成过程,为芍药属花香挥发物生产的功能表征、育种和生物工程候选基因提供了基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Integration of RNA-Seq and Metabolite Analysis Reveals the Key Floral Scent Biosynthetic Genes in Herbaceous Peony
Floral scent is an essential and genetically complex trait in herbaceous peonies (Paeonia lactiflora Pall.); however, specific genes related to metabolic and regulatory networks remain scantily studied. Our study integrated metabolite profiling and RNA-sequencing to screen floral scent biosynthetic genes. Hence, the major molecules identified by headspace collection combined with cultivar-specific GC-MS analysis were geraniol, β-caryophyllene, 2-phenylethanol (2-PE), citronellol, and 1,8-cineole. Genes related to terpenoids and 2-PE biosynthesis were identified after the assembly and annotation of the P. lactiflora transcriptomes. Eight angiosperm-specific terpene synthases (TPSs) from the TPS-a and TPS-b clades, as well as enzymes linked to 2-PE synthesis such as aromatic amino acid decarboxylase (AADC), phenylacetaldehyde reductase (PAR), and geranial reductase (GER) were identified. The biochemical analysis of the enzymes encoded by PlPAR1 and PlGER1 generated 2-PE from phenylacetaldehyde (PAld). The pairwise alignment of AADC1 reveals a splice variant lacking a 124 bp fragment, thus highlighting the possible role of alternative splicing in modulating floral scent composition. This study offers insights into the molecular-level biosynthesis of terpenoids and 2-PE in Peonia taxa, and provides the basis for the functional characterization, breeding, and bioengineering of prospective candidate genes for the production of floral volatiles in the Paeonia genus.
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