Euprymna berryi as a comparative model host for Vibrio fischeri light organ symbiosis.

以 Euprymna berryi 为比较模型宿主研究费氏弧菌发光器官共生

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作者:Imes Avery M, Pavelsky Morgan N, Badal Klodia, Kamp Derrick L, Briseño John L, Sakmar Taylor, Vogt Miranda A, Nyholm Spencer V, Heath-Heckman Elizabeth A C, Grasse Bret, Septer Alecia N, Mandel Mark J
Functional studies of host-microbe interactions benefit from natural model systems that enable exploration of molecular mechanisms at the host-microbe interface. Bioluminescent Vibrio fischeri colonize the light organ of the Hawaiian bobtail squid, Euprymna scolopes, and this binary model has enabled advances in understanding host-microbe communication, colonization specificity, in vivo biofilms, intraspecific competition, and quorum sensing. The hummingbird bobtail squid, Euprymna berryi, can be generationally bred and maintained in lab settings and has had multiple genes deleted by CRISPR approaches. The prospect of expanding the utility of the light organ model system by producing multigenerational host lines led us to determine the extent to which the E. berryi light organ symbiosis parallels known processes in E. scolopes. However, the nature of the E. berryi light organ, including its microbial constituency and specificity for microbial partners, have not been examined. In this report, we isolate bacteria from E. berryi animals and tank water. Assays of bacterial behaviors required in the host, as well as host responses to bacterial colonization, illustrate largely parallel phenotypes in E. berryi and E. scolopes hatchlings. This study reveals E. berryi to be a valuable comparative model to complement studies in E. scolopes.

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