食品科学 ›› 2023, Vol. 44 ›› Issue (18): 149-156.doi: 10.7506/spkx1002-6630-20221108-082

• 生物工程 • 上一篇    

基于Illumina MiSeq测序技术探究冷藏菊黄东方鲀菌群演替规律

曾鹭,刘淑集,陈晓婷,林河通,刘智禹   

  1. (1.福建农林大学食品科学学院,福建 福州 350002;2.福建水产研究所 国家海水鱼类加工技术研发中心,福建省海洋生物增养殖与高值化利用重点实验室,福建 厦门 361013)
  • 发布日期:2023-09-29
  • 基金资助:
    福建省省属公益类科研院所基本科研专项(2022R1013008); 福建省海洋服务与渔业高质量发展专项(FJHY-YYKJ-2022-1-9);福建省海洋保护与发展专项(2020)

Using Illumina MiSeq High-throughput Sequencing to Explore the Succession of Microbial Community in Takifugu flavidus during Cold Storage

ZENG Lu, LIU Shuji, CHEN Xiaoting, LIN Hetong, LIU Zhiyu   

  1. (1. College of Food Science, Fujian Agriculture and Forestry University, Fuzhou 350002, China;2. National Research and Development Center for Marine Fish Processing, Key Laboratory of Cultivation and High-value Utilization of Marine Organisms in Fujian Province, Fisheries Reasearch Instiute of Fujian, Xiamen 361013, China)
  • Published:2023-09-29

摘要: 为探究菊黄东方鲀0 ℃冷藏期间菌群演替变化情况,通过16S rDNA测序技术检测冷藏过程中腐败菌属,鉴定冷藏后期的优势腐败菌,分析微生物菌群变化规律及优势腐败菌的致腐能力。结果显示,菊黄东方鲀冷藏货架期约为5 d。在冷藏初期(0~3 d),产生的菌属种类最为丰富,包括假单胞菌属(Pseudomonas)、链霉菌属(Streptophyta)、希瓦氏菌属(Shewanella)等,而冷藏后期(6~15 d)菌属种类较为集中,主要为假单胞菌属和希瓦氏菌属。分离鉴定10 株冷藏后期的优势腐败菌,证实希瓦氏菌属和假单胞菌属比例较高,符合菌群分布规律。同时,对几种常见优势腐败菌的致腐能力进行分析,其致腐能力由大到小依次为荧光假单胞菌(Pseudomonas fluorescent)、产氮假单胞菌(P. azotoformans)、哈夫尼希瓦氏菌(Shewanella hafniensis)、波罗的海希瓦氏菌(S. baltica)。本研究旨在为深入研究菊黄东方鲀冷藏期腐败机制和延长其货架期提供参考。

关键词: 菊黄东方鲀;高通量测序;菌群演替规律;优势腐败菌;致腐能力

Abstract: In order to explore the microfloral succession in Takifugu flavidus during storage at 0 ℃, the spoilage bacteria were detected by 16S rDNA sequencing, the dominant spoilage bacteria in the late stage of storage were identified, and the changes in the microbial flora and the spoilage capacity of the dominant spoilage bacteria were analyzed. The results showed that the refrigerated shelf life of T. flavidus was about 5 days. In the early stage of storage (0–3 days), T. flavidus had the highest number of species of bacteria, including Pseudomonas, Streptophyta, and Shewanella, while in the late stage (6–15 days), the bacterial species were concentrated mainly in Pseudomonas and Shewanella. Ten dominant spoilage bacteria were isolated and identified, Shewanella and Pseudomonas accounting for a high proportion. Moreover, the spoilage capacity of several common dominant spoilage bacteria was analyzed, revealing that the decreasing order of the spoilage capacity was Pseudomonas fluorescent > P. azotoformans > Shewanella hafniensis > S. baltica. The results of this study provide a reference for understanding the spoilage mechanism of T. flavidus during cold storage and extending its shelf life.

Key words: Takifugu flavidus; high-throughput sequencing; bacterial community succession; dominant spoilage bacteria; spoilage capacity

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