4.5 Article

Patterns of bacterial diversity in embryonic capsules of the spotted salamander Ambystoma maculatum: an expanding view of a symbiosis

期刊

FEMS MICROBIOLOGY ECOLOGY
卷 97, 期 10, 页码 -

出版社

OXFORD UNIV PRESS
DOI: 10.1093/femsec/fiab128

关键词

symbiosis; Oophila; Ambystoma; algae; amplicon sequencing

资金

  1. Natural Sciences and Engineering Research Council of Canada [RGPIN-2015-05040]
  2. Undergraduate Student Research Assistantship from the Natural Sciences and Engineering Research Council of Canada

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The study found that the bacterial diversity in the egg capsules of the spotted salamander Ambystoma maculatum is lower than in the pond water, and there is spatial and temporal variation in bacterial diversity within capsules and ponds. Despite this variation, there are certain bacterial taxa that are consistently present among capsules spatially and temporally.
The unicellular green alga, Oophila amblystomatis, populates egg capsules of the spotted salamander Ambystoma maculatum. This nutrient-exchange mutualism is widely perceived as a bipartite interaction, but the presence and contributing effects of bacteria to this symbiosis are unknown. We used standard cultivation techniques and amplicon sequencing of the V4/V5 region of 16S rRNA gene to identify and compare diversity of bacterial taxa in embryonic capsules with that in the aquatic breeding habitat. Our sampling regime allowed us to investigate diversity among individual capsules of an egg mass and between two ponds and sampling years. Capsules contain much lower diversity of bacteria than pond water, and spatial and temporal variation in intracapsular and pond bacterial diversity was observed. Despite this variation, sequences corresponding to species in the orders Burkholderiales and Oligoflexales were either prevalent or abundant, or both. Isolates most commonly recovered from capsules were closely related to species in the genus Herbaspirillum (Burkholderiaceae); other isolates were pseudomonads, but in all cases are closely related to known vascular plant-associated species. We conclude that, despite observed variation, there are bacterial taxa whose presence is held in common spatially and temporally among capsules and that the symbiosis between O. amblystomatis and A. maculatum may involve these taxa.

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