Department of Botany, University of British Columbia, Vancouver, British Columbia, Canada.
Hakai Institute, Heriot Bay, British Columbia, Canada.
PLoS One. 2024 Aug 12;19(8):e0308763. doi: 10.1371/journal.pone.0308763. eCollection 2024.
An embryonic diapause in unfavourable conditions has allowed brine shrimp to thrive in hypersaline environments and, unexpectedly, mail-order sachets and small, novelty tanks. Marketed as Sea-Monkeys®, each kit involves a 3-step process to generate adult Artemia within a matter of weeks. Whether these kits also allow for the maintenance of a host-associated microbiome is unclear. Therefore, comparing five replicate tanks under the same culture conditions, we sequenced the 16S ribosomal small subunit (SSU) gene to analyse bacterial community compositions in adults, their surrounding tank water, and their feed. Adult Sea-Monkeys® harboured a bacterial microbiome that was clearly distinguishable from the tank water and food. Furthermore, individual tanks had a notable effect on fine-scale microbiome variation. Several Sea-Monkey bacterial variants appeared absent in environmental samples and included genera (Leucobacter and Microbacterium) known to confer desiccation resistance in other hosts. Although Sea-Monkeys® taxonomy is unclear, phylogenetic inference of the cytochrome c oxidase I (COXI) gene from the host animal suggests Sea-Monkeys® belong to the Artemia franciscana 'superspecies'. Overall, Sea-Monkeys® kits appear to be a convenient and scalable mesocosm for the study of host-microbiome interactions and could serve as a useful tool for future invertebrate microbiome research, outreach, and education.
在不利条件下,胚胎休眠使卤虫能够在高盐环境中茁壮成长,而且出人意料的是,还能在邮购香囊和小型新奇水族箱中生存。这些卤虫以“海猴”的商品名进行销售,每个套件都包含 3 个步骤,可在数周内生成成年卤虫。这些套件是否也允许维持与宿主相关的微生物组尚不清楚。因此,在相同的培养条件下,我们对五个重复水族箱进行了比较,对成年个体、周围水箱水及其饲料中的 16S 核糖体小亚基(SSU)基因进行了测序,以分析细菌群落组成。成年海猴体内携带着一种与水箱水和食物明显不同的细菌微生物组。此外,个体水箱对微生物组的细微变化有显著影响。几个海猴细菌变体似乎不存在于环境样本中,包括已知在其他宿主中赋予耐旱性的属(Leucobacter 和 Microbacterium)。尽管海猴的分类学尚不清楚,但对宿主动物的细胞色素 c 氧化酶 I(COXI)基因进行系统发育推断表明,海猴属于“弗朗西丝卡纳亚种”。总的来说,海猴套件似乎是研究宿主-微生物组相互作用的方便且可扩展的中间生态系统,并且可以作为未来无脊椎动物微生物组研究、推广和教育的有用工具。