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Biology subjects

Berlow, M.

Publications and source records attributed to Berlow, M..

2 recordsLinked to original sources

Reproductive microbial diversity is associated with competitive phenotypes in socially polyandrous jacanas

The composition of host-associated microbial communities may reflect the overall status of the host, including physiology and reproductive success. New hypotheses suggest that reproductive microbiomes can mediate sexually selected phenotypes, which may be particularly important for species with mating systems that feature strong sexual selection. These dynamics have been particularly understudied in female animals. Using 16S rRNA sequencing, we compared the cloacal microbiome of females and males from two socially polyandrous bird species that vary in the strength of sexual selection, Jacana spinosa (Northern Jacana) and J. jacana (Wattled Jacana). We hypothesized that the strength of sexual selection would shape cloacal microbial diversity, such that the more polyandrous J. spinosa would have a more diverse microbiome, and that microbiomes would be more diverse in females than in males. If the reproductive microbiome is indicative of competitive status, we also hypothesized that cloacal microbial diversity would be associated with competitive traits, including plasma testosterone levels, body mass, or weaponry. We found a positive relationship between microbial alpha diversity and testosterone and weaponry in female J. spinosa. We found no differences in microbial alpha diversity between species or sexes, but we did find that microbial beta diversity significantly differed between species. Our results suggest that the cloacal microbiome may be a key component of the competitive phenotype in socially polyandrous jacanas, supporting the hypothesis that the interplay between sexual selection and microbial communities can shape the physiology and fitness of wild avian hosts. LAY SUMMARY- The reproductive microbiome may be a key component of the competitive phenotype - We examined cloacal microbial diversity in females and males of two Jacana species - Microbial alpha diversity is associated with testosterone and weaponry in female J. spinosa - Microbial beta diversity differed between J. spinosa and J. jacana

evolutionary biology↗

Plant G x Microbial E: Plant genotype interaction with soil bacterial community shapes rhizosphere composition during invasion

It is increasingly recognized that different genetic variants can uniquely shape their microbiomes. Invasive species often evolve in their introduced ranges, but little is known about the potential for microbial associations to evolve during invasion as a result. We investigated invader genotype (G) and microbial environment (E) interactions in C. solstitialis (yellow starthistle), a Eurasian plant that is known to have evolved novel genotypes, and to have altered microbial interactions, in its severe invasion of California, USA. We conducted an experiment in which native and invading genotypes were inoculated with native and invaded range soil microbial communities. We used amplicon sequencing to characterize rhizosphere bacteria in both the experiment and the field soils from which they were derived. We found that bacterial diversity is higher in invaded soils, but that invading genotypes accumulated a lower diversity of bacteria and unique microbial composition in experimental inoculations, relative to native genotypes. Associations with potentially beneficial Streptomycetaceae were particularly interesting, as these were more abundant in the invaded range and accumulated on invading genotypes. Thus variation in microbial associations of invaders was driven by the interaction of G and E, and microbial communities appear to change in composition along with host evolution during invasion.

evolutionary biology↗