4.7 Article

Disentangling Diet- and Medium-Associated Microbes in Shaping Daphnia Gut Microbiome

期刊

MICROBIAL ECOLOGY
卷 84, 期 3, 页码 911-921

出版社

SPRINGER
DOI: 10.1007/s00248-021-01900-x

关键词

Daphnia; Gut microbiome; Diet microbiome; Fitness traits; Comamonadaceae

资金

  1. National Natural Science Foundation of China [31730105, 31800385]
  2. China Postdoctoral Science Foundation [2020M681658]
  3. Priority Academic Program Development of Jiangsu Higher Education Institutions of China

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The study demonstrates that the microbiome of Daphnia is flexible and varies with genotype, diet, and medium-associated microbes. Not all bacteria are beneficial to Daphnia, and only symbionts can increase Daphnia performance.
Host genotype and environment are considered crucial factors in shaping Daphnia gut microbiome composition. Among the environmental factors, diet is an important factor that regulates Daphnia microbiome. Most of the studies only focused on the use of axenic diet and non-sterile medium to investigate their effects on Daphnia microbiome. However, in natural environment, Daphnia diets such as phytoplankton are associated with microbes and could affect Daphnia microbiome composition and fitness, but remain relatively poorly understood compared to that of axenic diet. To test this, we cultured two Daphnia magna genotypes (genotype-1 and genotype-2) in sterile medium and fed with axenic diet. To check the effects of algal diet-associated microbes versus free water-related microbes, Daphnia were respectively inoculated with three different inoculums: medium microbial inoculum, diet-associated microbial inoculum, and medium and diet-mixed microbial inoculum. Daphnia were cultured for 3 weeks and their gut microbiome and life history traits were recorded. Results showed that Daphnia inoculated with medium microbial inoculum were dominated by Comamonadaceae in both genotypes. In Daphnia inoculated with mixed inoculum, genotype-1 microbiome was highly changed, whereas genotype-2 microbiome was slightly altered. Daphnia inoculated with diet microbial inoculum has almost the same microbiome in both genotypes. The total number of neonates and body size were significantly reduced in Daphnia inoculated with diet microbial inoculum regardless of genotype compared to all other treatments. Overall, this study shows that the microbiome of Daphnia is flexible and varies with genotype and diet- and medium-associated microbes, but not every bacteria is beneficial to Daphnia, and only symbionts can increase Daphnia performance.

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