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不同果肉厚度苦瓜代谢物质鉴定及表达差异分析OA

Differentially Expressed Metabolites in Momordica charantia of Varied Pulp Thickness

中文摘要英文摘要

[目的]完善苦瓜果肉厚度的变化规律,鉴定差异表达代谢物,分析其表达趋势,比较研究果肉厚度与代谢途径的关系及调控网络,为解析苦瓜果实生长发育调控机制提供佐证.[方法]以厚肉型 L1和薄肉型 L2苦瓜种质为材料,调查不同时期果肉厚度的变化,利用代谢组鉴定差异表达代谢物(differentially expressed metabolites,DEMs),进行 KO功能注释、KEGG通路富集及其表达趋势等情况分析,鉴定果肉厚度形成和增长相关代谢物,并结合富集通路等进行比较和调控网络分析.[结果]不同种质苦瓜果肉厚度在不同时期的差异显著,授粉后 17 d(S3)和 23 d(S4)时期 L1的果肉厚度显著大于 L2.DEMs鉴定显示,L1S3 vs.L1S1组有 511个 DEMs,L2S3 vs.L2S1组有 545个 DEMs,其中共同出现的 DEMs占总数的 44%.KO注释分析表明,代谢模块涉及最多的类别、通路以及 DEMs数量.KEGG富集分析发现,两组中"代谢"相关通路占比最大,且部分通路重叠,L1S3 vs.L1S1组独有 DEM多巴胺,L2S3 vs.L2S1组独有 DEMs柠檬酸、D-赤藓糖-4-磷酸和 L-鸟氨酸均参与 5条及以上途径,而共有DEMs甜菊糖苷和脱镁叶绿酸 A的差异倍数(fold change,FC)值相差达 10倍以上.DEMs趋势分析显示,上述 6个关键代谢物在两组中的表达量变化趋势不同,揭示了种质间调控差异.[结论]苦瓜果肉厚度是重要的品质与经济指标,不同种质在不同生长发育时期的差异表现不一,且需要募集不同代谢物质参与其调控,以满足基础生长、品质形成及抗性发展等不同需求.

[Objective]Varied pulp thickness and differentially expressed metabolites(DEMs)of Momordica charantia L.germplasms and the associated metabolic pathways and regulatory networks related to the fruit development were analyzed.[Methods]DEMs,KO functional annotation,KEGG pathway enrichment,and expressions of the thick-pulp M.charantia L1 and the thin-pulp L2 at different growth stages were determined to identify the differential metabolites between the two categories of bitter gourds.Comparative and regulatory network analyses based on the enrichment pathways were conducted to further analyze the differentiations.[Results]At all developmental stages,L1 and L2 differed significantly in pulp thickness.For instance,the fruit pulp of L1 was significantly thicker than that of L2 at Stage S3 and S4.There were 511 DEMs found between L1S3(i.e.,L1 at Stage S3,similar for the following)and L1S1,and 545 DEMs between L2S3 and L2S1,with 44%commonly existing in the two comparing groups.The metabolic modules in both groups shown by KO annotation were those most abundantly existed in a category or pathway,while those by KEGG enrichment analysis partially overlapped and in large proportion belonged to"metabolism"-related pathways.The unique DEMs in the groups included dopamine in L1S3 vs.L1S1 and citric acid,D-erythrose-4-phosphate,and L-ornithine in L2S3 vs.L2S1 and participated in 5 or more pathways.Whereas the common DEMs,i.e.,stevioside and pheophorbide A,differed more than 10-fold on FC value.The expressions of those 6 key metabolites were distinctly differentiated,reflecting a significant regulatory variation between L1 and L2.[Conclusion]The thickness of fruit pulp of a M.charantia could serve as an effective visual indicator for quality and market value of the germplasm.The two germplasms of bitter gourds compared in the study showed distinctive DEMs even at different developmental stages,as the plants required specific metabolites to regulate growth,quality,and stress-resistance as they grow.

裘波音;温庆放;林珲;张前荣;陈敏氡;郑多乐;李大忠;朱海生

福建省农业科学院作物研究所/福建省蔬菜遗传育种重点实验室/福建省蔬菜工程技术研究中心,福建 福州 350013福建省农业科学院作物研究所/福建省蔬菜遗传育种重点实验室/福建省蔬菜工程技术研究中心,福建 福州 350013福建省农业科学院作物研究所/福建省蔬菜遗传育种重点实验室/福建省蔬菜工程技术研究中心,福建 福州 350013福建省农业科学院作物研究所/福建省蔬菜遗传育种重点实验室/福建省蔬菜工程技术研究中心,福建 福州 350013福建省农业科学院作物研究所/福建省蔬菜遗传育种重点实验室/福建省蔬菜工程技术研究中心,福建 福州 350013福建农林大学国际学院,福建 福州 350002||Forestry Faculty of University of British Columbia,Vancouver V6T1Z4,Canada福建省农业科学院作物研究所/福建省蔬菜遗传育种重点实验室/福建省蔬菜工程技术研究中心,福建 福州 350013福建省农业科学院作物研究所/福建省蔬菜遗传育种重点实验室/福建省蔬菜工程技术研究中心,福建 福州 350013

农业科技

苦瓜果肉厚度代谢物表达差异

Momordica charantia L.pulp thicknessmetabolitesdifferential expressions

《福建农业学报》 2026 (4)

461-469,9

福建省自然科学基金项目(2023J01375)福建省瓜果类蔬菜种质资源库(圃)项目(ZYBHDWZX202504)国家大宗蔬菜产业技术体系福州综合试验站项目(CARS-23-G51)福建省农业科学院优秀科技创新人才专项(YCZX202403)福建省农业高质量发展超越"5511"协同创新工程项目(XTCXGC2021003)

10.19303/j.issn.1008-0384.2026.04.007

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