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Neonatal exposure to a wild-derived microbiome protects mice against diet-induced obesity.新生期接触野生来源微生物组可保护小鼠免受饮食诱导的肥胖。
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细菌分离物在树蛙胚胎上的定植顺序影响蝌蚪的微生物组结构。

Colonization order of bacterial isolates on treefrog embryos impacts microbiome structure in tadpoles.

机构信息

Department of Biological Sciences, Virginia Tech, Blacksburg, VA 24061-0131, USA.

Department of Biology, Vassar College, Poughkeepsie, NY 12604, USA.

出版信息

Proc Biol Sci. 2023 Mar 29;290(1995):20230308. doi: 10.1098/rspb.2023.0308. Epub 2023 Mar 22.

DOI:10.1098/rspb.2023.0308
PMID:36946107
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC10031419/
Abstract

Priority effects, or impacts of colonization order, may have lasting influence on ecological community composition. The embryonic microbiome is subject to stochasticity in colonization order of bacteria. Stochasticity may be especially impactful for embryos developing in bacteria-rich environments, such as the embryos of many amphibians. To determine if priority effects experienced as embryos impacted bacterial community composition in newly hatched tadpoles, we selectively inoculated the embryos of laboratory-raised hourglass treefrogs, , with bacteria initially isolated from the skin of wild adults over 2 days. First, embryos were inoculated with two bacteria in alternating sequences. Next, we evaluated the outcomes of priority effects in an co-culture assay absent of host factors. We then performed a second embryo experiment, inoculating embryos with one of three bacteria on the first day and a community of five target bacteria on the second. Through 16S rRNA gene amplicon sequencing, we observed relative abundance shifts in tadpole bacteria communities due to priority effects. Our results suggest that the initial bacterial source pools of embryos shape bacterial communities at later life stages; however, the magnitude of those changes is dependent on the host environment and the identity of bacterial colonists.

摘要

优先效应,或定植顺序的影响,可能对生态群落组成产生持久影响。胚胎微生物组定植顺序存在随机性,细菌定植顺序具有随机性。对于在细菌丰富的环境中发育的胚胎,例如许多两栖动物的胚胎,这种随机性的影响可能特别大。为了确定胚胎期经历的优先效应是否会影响刚孵化的蝌蚪中的细菌群落组成,我们选择用最初从野外成年个体皮肤中分离出的细菌对实验室饲养的沙漏树蛙的胚胎进行定植,为期 2 天。首先,胚胎按交替顺序接种两种细菌。接下来,我们在没有宿主因素的共培养测定中评估了优先效应的结果。然后,我们进行了第二次胚胎实验,第一天接种一种细菌,第二天接种五种目标细菌的群落。通过 16S rRNA 基因扩增子测序,我们观察到由于优先效应导致的蝌蚪细菌群落相对丰度的变化。我们的结果表明,胚胎的初始细菌来源池决定了后期生命阶段的细菌群落;然而,这些变化的幅度取决于宿主环境和定植细菌的身份。