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综合转录组学和代谢组学分析揭示了控制‘化州柚’果实中黄酮类生物合成的关键基因。

Integrated transcriptomic and metabolomic analyses reveal key genes controlling flavonoid biosynthesis in Citrus grandis 'Tomentosa' fruits.

作者信息

Fan Ruiyi, Zhu Congyi, Qiu Diyang, Mao Genlin, Mueller-Roeber Bernd, Zeng Jiwu

机构信息

Institute of Fruit Tree Research, Guangdong Academy of Agricultural Sciences, Key Laboratory of South Subtropical Fruit Biology and Genetic Resource Utilization, Ministry of Agriculture and Rural Affairs, Guangdong Provincial Key Laboratory of Tropical and Subtropical Fruit Tree Research, Guangzhou, 510640, China.

Institute of Biochemistry and Biology, University of Potsdam, 14476, Potsdam, Golm, Germany; Max Planck Institute of Molecular Plant Physiology, 14476, Potsdam, Golm, Germany; Center of Plant Systems Biology and Biotechnology (CPSBB), 139 Ruski Blvd., 4000, Plovdiv, Bulgaria.

出版信息

Plant Physiol Biochem. 2023 Mar;196:210-221. doi: 10.1016/j.plaphy.2023.01.050. Epub 2023 Jan 28.

Abstract

As a well-recognized traditional Chinese medicine (TCM), immature fruits of Citrus grandis 'Tomentosa' (CGT) serve to cure chronic cough in humans. Specialized metabolites including flavonoids may have contribute to this curing effect. Knowledge about the molecular mechanisms underlying flavonoid biosynthesis in 'Tomentosa' fruits will, therefore, support the breeding of varieties with improved medicinal properties. Hence, we profiled the transcriptomes and metabolites of the fruits of two contrasting C. grandis varieties, namely 'Zheng-Mao' ('ZM') used in TCM production, and a locally cultivated pomelo, namely 'Guang-Qing' ('GQ'), at four developmental stages. A total of 39 flavonoids, including 14 flavanone/flavone, 5 isoflavonoids, 12 flavonols, and 6 anthocyanins, were identified, and 16 of which were quantitatively determined in the fruits of the two varieties. We found that 'ZM' fruits contain more flavonoids than 'GQ'. Specifically, rhoifolin levels were significantly higher in 'ZM' than in 'GQ'. We annotated 31,510 genes, including 1,387 previously unknown ones, via transcriptome sequencing of 'ZM' and 'GQ.' A total of 646 genes were found to be differentially expressed between 'ZM' and 'GQ' throughout at all four fruit developmental stages, indicating that they are robust expression markers for future breeding programs. Weighted gene co-expression network analysis identified 18 modules. Combined transcriptional and metabolic analysis revealed 25 genes related to flavonoid biosynthesis and 16 transcriptional regulators (MYBs, bHLHs, WD40) that may be involved in the flavonoids biosynthesis in C. grandis 'Tomentosa' fruits.

摘要

作为一种广为人知的传统中药,化橘红的未成熟果实可用于治疗人类慢性咳嗽。包括黄酮类化合物在内的特殊代谢产物可能有助于这种治疗效果。因此,了解化橘红果实中黄酮类生物合成的分子机制,将有助于培育具有更好药用特性的品种。为此,我们对两个对比鲜明的柚品种果实的转录组和代谢产物进行了分析,这两个品种分别是用于中药生产的“正毛”(“ZM”)和当地种植的柚子“广青”(“GQ”),分析阶段为四个发育阶段。共鉴定出39种黄酮类化合物,包括14种黄烷酮/黄酮、5种异黄酮、12种黄酮醇和6种花青素,其中16种在两个品种的果实中进行了定量测定。我们发现“ZM”果实中的黄酮类化合物比“GQ”多。具体而言,“ZM”中橙皮苷的含量显著高于“GQ”。通过对“ZM”和“GQ”的转录组测序,我们注释了31510个基因,其中包括1387个以前未知的基因。在所有四个果实发育阶段,“ZM”和“GQ”之间共有646个基因差异表达,这表明它们是未来育种计划的可靠表达标记。加权基因共表达网络分析确定了18个模块。转录组和代谢组联合分析揭示了25个与黄酮类生物合成相关的基因和16个转录调节因子(MYB、bHLH、WD40),它们可能参与了化橘红果实中黄酮类化合物的生物合成。

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