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通过整合转录组学和代谢组学分析揭示栀子果实色素合成的分子机制

Unveiling molecular mechanisms of pigment synthesis in gardenia () fruits through integrative transcriptomics and metabolomics analysis.

作者信息

Li Kangqin, Yu Lixin, Gao Liqin, Zhu Lingzhi, Feng Xiaotao, Deng Shaoyong

机构信息

Jiangxi Academy of Forestry, Nanchang 330032, China.

Engineering Research Center for Gardenia of National Forestry and Grassland Administration, Nanchang 330032, China.

出版信息

Food Chem (Oxf). 2024 Jun 3;9:100209. doi: 10.1016/j.fochms.2024.100209. eCollection 2024 Dec 30.

Abstract

This study conducted a combined transcriptomics and metabolomics analysis in premature and mature developmental stages of Ellis fruits to identify the molecular mechanisms of pigment synthesis. The transcriptomics data produced high-quality clean data amounting to 46.98 gigabytes, exhibiting a mapping ratio of 86.36% to 91.43%. Transcriptomics analysis successfully identified about 3,914 differentially expressed genes which are associated with pivotal biological processes, including photosynthesis, chlorophyll, biosynthetic processes, and protein-chromophore linkage pathways. Functional diversity was clarified by the Clusters of Orthologous Groups (COG) classification, which focused mainly on pigment synthesis functions. Pathways analysis using the Kyoto Encyclopedia of Genes and Genomes (KEGG) and Gene Ontology (GO) revealed critical pathways affecting pigment development. Metabolomics studies were carried out utilizing Ultra Performance Liquid Chromatography and mass spectrometry (UPLC-MS). About 480 metabolites were detected via metabolomics investigation, the majority of that were significantly involved in pigment synthesis. Cluster and pathway analyses revealed the importance of pathways such as plant secondary metabolite biosynthesis, biosynthesis of phenylpropanoids and plant hormone signal transduction in pigment synthesis. Current research advances our comprehension of the underlying mechanisms at the molecular level governing pigment synthesis in gardenia fruits, furnishing valuable insights for subsequent investigations.

摘要

本研究对栀子果实的早熟和成熟发育阶段进行了转录组学和代谢组学联合分析,以确定色素合成的分子机制。转录组学数据产生了总量达46.98GB的高质量清洁数据,映射率为86.36%至91.43%。转录组学分析成功鉴定出约3914个差异表达基因,这些基因与关键生物过程相关,包括光合作用、叶绿素、生物合成过程以及蛋白质-发色团连接途径。通过直系同源基因簇(COG)分类阐明了功能多样性,其主要聚焦于色素合成功能。使用京都基因与基因组百科全书(KEGG)和基因本体论(GO)进行的通路分析揭示了影响色素发育的关键通路。利用超高效液相色谱和质谱(UPLC-MS)开展了代谢组学研究。通过代谢组学调查检测到约480种代谢物,其中大多数显著参与色素合成。聚类和通路分析揭示了植物次生代谢物生物合成、苯丙烷类生物合成和植物激素信号转导等通路在色素合成中的重要性。当前的研究增进了我们对栀子果实色素合成分子水平潜在机制的理解,为后续研究提供了有价值的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5538/11225661/c1a6b5a267a7/gr1.jpg

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