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Mating Leads to a Decline in the Diversity of Symbiotic Microbiomes and Promiscuity Increased Pathogen Abundance in a
Luo-Yan Zhang1, Hong Yu1, Da-Ying Fu1
1Yunnan Academy of Biodiversity, Southwest Forestry University, Kunming, China.
Abstract:
Mating may promote microbial diversity through sexual transmission, while mating-induced immune responses may decrease it. Therefore, the study of mating-induced microbiomes changes under different mating systems is informative to unravel its biological relevance and evolutionary significance. Here, we studied the microbiomes in a community context within the abdomen of Spodoptera frugiperda females using 16S rDNA sequences by setting virgin females, and females mated once, twice, or thrice with the same or different males. Alpha and beta diversities revealed that mating significantly affected the composition of microbiomes in S. frugiperda females, wherein virgin females have the highest diversity, followed by one-time mated females and females mated with multiple males, while females mated repeatedly with the same male showed the lowest diversity. The low diversity in females mated repeatedly with the same male may be due to lower sexual transmission as only mated with one mate and higher immune response from repeated matings. Functional prediction by FAPROTAX and literature searching found 17 possible pathogens and 12 beneficial microbiomes. Multiple mating turned over the abundance of pathogens and beneficial microbes, for example, Enterococcus and Lactobacillus spp. (beneficial) showed higher abundance in virgin females while Morganella and Serratia spp. (pathogens) showed higher abundance in females mated with multiple males. These results suggest that mating causes a decline in the diversity of symbiotic microbiomes and promiscuity incurs a higher pathogen abundance in S. frugiperda females, which may be the result of sexual transmission of bacterial strains and immune responses targeting members of the microbiomes. To our knowledge, we demonstrate microbiomes changes in female insects under virgin and different mating regimes for the first time.
Insights
Mating significantly alters insect microbiomes, with virgin females showing the highest diversity. Repeated mating with the same male reduces diversity, while multiple partners increase pathogen abundance in Spodoptera frugiperda.
Area of Science:
- Microbiology
- Insect Ecology
- Evolutionary Biology
Background:
- Mating's impact on host microbiomes is complex, potentially increasing diversity via sexual transmission but decreasing it through immune responses.
- Understanding these changes is crucial for the biological and evolutionary significance of mating systems.
Purpose of the Study:
- To investigate the effects of different mating regimes on the abdominal microbiome composition in female Spodoptera frugiperda.
- To correlate microbiome changes with mating frequency and partner diversity.
Main Methods:
- 16S rDNA sequencing was used to analyze abdominal microbiomes of virgin and mated Spodoptera frugiperda females.
- Females were subjected to varying mating frequencies (once, twice, thrice) with the same or different males.
- Microbiome diversity (alpha and beta) and functional predictions (FAPROTAX) were assessed.
Main Results:
- Mating significantly altered microbiome composition, with virgin females exhibiting the highest microbial diversity.
- Diversity decreased with mating frequency, being lowest in females repeatedly mated with the same male.
- Multiple mating increased the abundance of potential pathogens (e.g., Morganella, Serratia) and decreased beneficial microbes (e.g., Enterococcus, Lactobacillus).
Conclusions:
- Mating leads to a decline in symbiotic microbiome diversity in female insects.
- Promiscuity is associated with increased pathogen load, likely due to sexual transmission and immune responses.
- This study provides novel insights into insect microbiome dynamics under various mating systems.
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