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Tibbs-Cortes, B. W.

Publications and source records attributed to Tibbs-Cortes, B. W..

2 recordsLinked to original sources

Fluorescence In Situ Hybridization Provides Evidence for the Presence of the Endosymbiotic Bacterial Genus Rickettsia in Tardigrades

Many ecdysozoans harbor endosymbiotic bacteria within their microbiota, and these endosymbionts can have a range of positive and negative effects on their hosts. Recent 16S rRNA gene amplicon sequencing studies have provided evidence for endosymbionts within the tardigrade microbiota. In a previous study amplicon study, we determined that sequences corresponding to the endosymbiotic genus Rickettsia were significantly more associated with tardigrades than with the substrate from which they were isolated. Here, we performed fluorescence in situ hybridization (FISH) using a Rickettsia-specific probe, RickB1, to determine if Rickettsia could be found in tardigrades. RickB1 and a probe targeting most bacteria, EUB338, colocalized within the tissues of tardigrades, indicating the presence of Rickettsia. We also performed FISH using RickB1 and a nonsense probe which allowed us to distinguish between false positives and true positives. This method revealed RickB1 signals in tardigrades that were not due to erroneous probe binding, providing further evidence that Rickettsia is present in tardigrades. Future research will be necessary to determine the effects, if any, of this endosymbiont on its tardigrade host.

microbiology↗

Tardigrade community microbiomes in North American orchards include putative endosymbionts and plant pathogens

The microbiome of tardigrades, a phylum of microscopic animals best known for their ability to survive extreme conditions, is poorly studied worldwide and completely unknown in North America. An improved understanding of tardigrade-associated bacteria is particularly important because tardigrades have been shown to act as vectors of the plant pathogen Xanthomonas campestris in the laboratory. However, the potential role of tardigrades as reservoirs and vectors of phytopathogens has not been investigated further. This study analyzed the microbiota of tardigrades from six apple orchards in central Iowa, USA, and is the first analysis of the microbiota of North American tardigrades. It is also the first ever study of the tardigrade microbiome in an agricultural setting. We utilized 16S rRNA gene amplicon sequencing to characterize the tardigrade community microbiome across four contrasts: location, substrate type (moss or lichen), collection year, and tardigrades versus their substrate. Alpha diversity of the tardigrade community microbiome differed significantly by location and year of collection but not by substrate type. Our work also corroborated earlier findings, demonstrating that tardigrades harbor a distinct microbiota from their environment. We also identified tardigrade-associated taxa that belong to genera known to contain phytopathogens (Pseudomonas, Ralstonia, and the Pantoea/Erwinia complex). Finally, we observed members of the genera Rickettsia and Wolbachia in the tardigrade microbiome; because these are obligate intracellular genera, we consider these taxa to be putative endosymbionts of tardigrades. These results suggest the presence of putative endosymbionts and phytopathogens in the microbiota of wild tardigrades in North America.

microbiology↗