食品科学 ›› 2023, Vol. 44 ›› Issue (14): 169-180.doi: 10.7506/spkx1002-6630-20220629-338

• 生物工程 • 上一篇    下一篇

健康产蛋母鸭蛋内容物非致病菌与其生殖道和盲肠菌群的相关性分析

卢昌丽,熊香元,陈力力,任佑华,刘焱,张仁杰   

  1. (1.湖南农业大学食品科学技术学院,湖南?长沙 410128;2.清镇市站街镇农村发展综合服务中心,贵州?贵阳 551403;3.湖南文理学院,湖南?常德 415000)
  • 出版日期:2023-07-25 发布日期:2023-08-11
  • 基金资助:
    湖南省教育厅重点科研项目(16A099);公益性行业(农业)科研专项(201303084); 湖南省教育厅一般项目(20C0959)

Relationship between Non-Pathogenic Bacteria from Eggs of Healthy Laying Ducks and Flora Structure in the Genital Tract and Cecum

LU Changli, XIONG Xiangyuan, CHEN Lili, REN Youhua, LIU Yan, ZHANG Renjie   

  1. (1. College of Food Science and Technology, Hunan Agricultural University, Changsha 410128, China;2. Qingzhen Zhanjie Town Rural Development Integrated Service Center, Guiyang 551403, China;3. Hunan University of Arts and Science, Changde 415000, China)
  • Online:2023-07-25 Published:2023-08-11

摘要: 目的:研究健康产蛋母鸭(麻鸭)的鸭蛋内细菌菌群,及与母鸭生殖道和盲肠细菌菌群相关性。方法:解剖健康产蛋母鸭,取其生殖道和盲肠组织以及体内软壳蛋和体外硬壳蛋的蛋内容物,利用平板计数法进行可培养细菌计数,MiSeq高通量测序分析未培养细菌菌群的多样性和相关性。结果:各样品菌落总数大小的顺序为盲肠>生殖道>硬壳蛋>软壳蛋;细菌基因序列分属于56 个门和1 319 个属,盲肠和生殖道细菌丰度值较大、物种均匀度较好,优势菌属有拟杆菌属(Bacteroides)、巨单胞菌属(Megamonas)和弯曲杆菌属(Campylobacter)等,而软壳蛋和硬壳蛋的物种更丰富且优势集中性较高,假单胞菌属(Pseudomonas)和不动杆菌属(Acinetobacter)分别占总丰度的19.01%与10.01%;基因功能预测显示各组样品均以代谢功能和糖酵解功能丰度较高,盲肠和生殖道组织的革兰氏阳性和厌氧表型存在丰度优势,软壳蛋和硬壳蛋的致病性和氧化胁迫等表型显著;4 组样品优势菌属均有重叠,其中蛋(硬壳蛋+软壳蛋)内容物菌属与盲肠重叠率13.96%,与生殖道重叠率24.35%,另外,系统进化树分析表明所有样品菌属都具有一定的亲缘关系,且均与盲肠显著作用菌属中的拟杆菌属具有同源性。结论:鸭蛋不是在无菌环境形成,在蛋形成过程中健康产蛋母鸭盲肠和生殖道定居细菌能进入蛋的不同结构,成为鸭蛋内菌群的一部分。本研究结果能为进一步探究蛋内容物非致病细菌特性以及综合控制提供一定参考。

关键词: 鸭蛋;盲肠;生殖道;高通量测序;细菌多样性

Abstract: Objective: The aim was to investigate whether a bacterial flora exists in the eggs of healthy laying ducks (Ma breed), and if yes, whether the bacterial flora could be associated with those in the genital tract and cecum. Methods: Healthy laying ducks were dissected to collect genital tract and cecum tissues, as well as soft- and hard-shelled duck eggs, and cultivable bacteria were counted by plate count method, and the diversity and correlation of uncultured bacterial flora were analyzed by MiSeq high-throughput sequencing. Results: The decreasing order of the total bacterial counts in the samples was cecum > genital tract > hard-shelled egg > soft-shelled egg. The bacterial gene sequences belonged to 56 phyla and 1 319 genera. The abundance and species evenness of bacteria in the cecum and genital tract were higher. The dominant genera included Bacteroides, Megamonas and Campylobacter. Species abundance and dominant concentration were higher in soft- and hard-shell eggs. Pseudomonas and Acinetobacter accounted for 19.01% and 10.01% of the total abundance, respectively. Gene function prediction showed that all samples had high abundance of metabolic and glycolytic functions. The gram-positive and anaerobic phenotypes in the cecum and genital tract were abundant. The pathogenicity and oxidative stress of bacteria in soft and hard shell eggs were significant. The dominant bacterial genera in the four samples were overlapped, and the overlap rates of egg content with the cecum and genital tract were 13.96% and 24.35%, respectively. In addition, the phylogenetic tree analysis showed that the genera in all samples were closely related to each other and shared homology with the significantly contributing genus Bacteroides in the cecum. Conclusion: Duck eggs are not formed in a sterile environment, the bacteria residing in the cecum and reproductive tract of healthy laying ducks can infect different egg structures during its formation and become a part of the internal flora in duck eggs. These results can provide a reference for further research on the characteristics and control of non-pathogenic bacteria in egg contents.

Key words: duck egg; cecum; reproductive tract; high-throughput sequencing; bacterial diversity

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