食品科学 ›› 2026, Vol. 47 ›› Issue (5): 141-150.doi: 10.7506/spkx1002-6630-20250916-123

• 生物工程 • 上一篇    

不同道地产区木瓜内生微生物群落组成及代谢通路的差异分析

李念祖,李云飞,李蓉芳,姚玉玲,杨迎春,王凤   

  1. (宜昌市农业科学研究院,湖北 宜昌 443009)
  • 发布日期:2026-04-13
  • 基金资助:
    宜昌市特色产业研究示范推广项目;宜昌市科技计划项目(A25-1-048)

Composition and Differential Metabolic Pathway Analysis of Endophytic Microbial Communities in Chaenomeles speciosa (Sweet) Nakai from Different Genuine Production Areas

LI Nianzu, LI Yunfei, LI Rongfang, YAO Yuling, YANY Yingchun, WANG Feng   

  1. (Yichang Academy of Agricultural Science, Yichang 443009, China)
  • Published:2026-04-13

摘要: 为探究不同道地产区对木瓜内生微生物群落组成及代谢通路的影响,分析内生微生物代谢与木瓜活性成分积累的关联性,以期为后续木瓜产地特异性标记开发,探寻木瓜内生功能菌群提供参考。选取3 个道地产区的木瓜鲜果为研究对象,利用高通量测序技术、高效液相色谱分析木瓜内生物群落与活性成分含量等指标。结果表明,道地产区对木瓜内生细菌多样性的影响小于对内生真菌多样性的影响,产区之间相对距离越近两者之间的内生微生物多样性差异越小。产区对木瓜内生细菌主要菌群类别与相对丰度的影响不大,其主要菌群为乳杆菌属、发光杆菌属、毛螺菌属NK4A136组,但产区对内生真菌主要菌群类别与相对丰度呈显著性影响,念珠菌属、柱隔孢属、枝孢霉属、腐霉属、瓶头霉属在一个或两个产地特异性富集。木瓜齐墩果酸、熊果酸总含量受不同产地的影响,且存在显著性差异,但内生微生物合成的萜类前体物质——异戊烯基焦磷酸与其总含量积累关联性小。木瓜内生微生物中参与异戊烯基焦磷酸合成的细菌菌群主要为毛螺菌属NK4A136组、发光杆菌属、乳酸杆菌属等,参与异戊烯基焦磷酸合成的已知主要真菌菌群为念珠菌属、柱隔孢属、枝孢霉属等。本研究以期为构建木瓜产地鉴定方法,及开发木瓜萜类前体物质合成的复合微生物菌群奠定基础。

关键词: 木瓜;内生微生物;道地产区;齐墩果酸;熊果酸

Abstract: This study aimed to investigate the composition and metabolic pathways of endophytic microbial communities in Chaenomeles speciosa (Sweet) Nakai from different genuine production areas and to analyze the correlation between endophytic microbial metabolism and active substance accumulation in C. speciosa (Sweet) Nakai in order to provide a reference for developing geographical origin-specific markers and exploring functional endophytic microbial communities in this plant. Fresh papaya fruits from three genuine production areas were analyzed for endophytic microbial communities and active substance contents using high-throughout sequencing and high-performance liquid chromatography (HPLC). The results revealed that the geographical origin of C. speciosa (Sweet) Nakai affected endophytic bacterial diversity less than endophytic fungi diversity. The closer the geographical distance between two production areas, the smaller the difference in the diversity of endophytic microbial communities. The geographical origin had little effect on the major flora types and relative abundance of endophytic bacteria in C. speciosa (Sweet) Nakai, with the main bacterial genera being Lactobacillus, Photobacterium, Lachnospiraceae_NK4A136_group. However, the geographical origin significantly affected the major flora types and relative abundance of endophytic fungal communities, with the genera Candida, Ramularia, Cladosporium, Humicola, and Phialocephala being significantly enriched in papaya samples from one or two production areas. The total content of oleanolic acid and ursolic acid varied significantly among different production areas, while it showed a small correlation with the accumulation of the terpenoid precursor isopentenyl pyrophosphate synthesized by endophytic microorganisms. The main endophytic bacterial communities involved in the synthesis of isopentenyl pyrophosphate were Lachnospiraceae_NK4A136_group, Photobacterium, and Lactobacillus, and the main fungal communities involved in the synthesis of isopentenyl pyrophosphate were Candida, Ramularia, and Cladosporium. This study lays the foundation for establishing a method for the geographical origin identification of C. speciosa (Sweet) Nakai and for developing a microbial consortium that synthesizes terpene precursors in this plant.

Key words: Chaenomeles speciosa (Sweet) Nakai; endophytic microorganisms; genuine production areas; oleanolic acid; ursolic acid

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