Wolbachia control stem cell behavior and stimulate germline proliferation in filarial nematodes
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Abstract
SUMMARY Although symbiotic interactions are ubiquitous in the living world, examples of developmental symbioses are still scarce. We show here the crucial role of Wolbachia in the oogenesis of filarial nematodes, a class of parasites of biomedical and veterinary relevance. While the Wolbachia -depleted nematodes produce faulty embryos, we identified thanks to newly generated techniques the earliest requirements of Wolbachia in the germline. They stimulate its proliferation in a cell-autonomous manner, in parallel of the known key controllers, and not through nucleotide supplementation as previously hypothesized. We also found Wolbachia to maintain the quiescence of a pool of germline stem cells ensuring for many years a constant delivery of about 1400 eggs per day. The loss of quiescence upon Wolbachia depletion, as well as the disorganization of the distal germline suggest that Wolbachia are required to execute the proper germline stem cell developmental program in order to produce viable eggs and embryos.
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