Henry Lucas P, Fernandez Michael, Wolf Scott, Abhyankar Varada, Ayroles Julien F
Department of Ecology and Evolutionary Biology Princeton University Princeton New Jersey USA.
Lewis-Sigler Institute for Integrative Genomics Princeton University Princeton New Jersey USA.
Ecol Evol. 2024 Jul 22;14(7):e70004. doi: 10.1002/ece3.70004. eCollection 2024 Jul.
The microbiome contributes to many different host traits, but its role in host adaptation remains enigmatic. The fitness benefits of the microbiome often depend on ecological conditions, but theory suggests that fluctuations in both the microbiome and environment modulate these fitness benefits. Moreover, vertically transmitted bacteria might constrain the ability of both the microbiome and host to respond to changing environments. provides an excellent system to investigate the impacts of interactions between the microbiome and the environment. To address this question, we created field mesocosms of undergoing seasonal environmental change with and without the vertically transmitted bacteria, . Sampling temporal patterns in the microbiome revealed that constrained microbial diversity. Furthermore, and a dominant member of the microbiome, , were associated with differences in two higher-order fitness traits, starvation resistance and lifespan. Our work here suggests that the interplay between the abiotic context and microbe-microbe interactions may shape key host phenotypes that underlie adaptation to changing environments. We conclude by exploring the consequences of complex interactions between and the microbiome for our understanding of eco-evolutionary processes that shape host-microbiome interactions.
微生物组对许多不同的宿主特征都有贡献,但其在宿主适应过程中的作用仍不明确。微生物组的适应性益处通常取决于生态条件,但理论表明,微生物组和环境的波动都会调节这些适应性益处。此外,垂直传播的细菌可能会限制微生物组和宿主对不断变化的环境做出反应的能力。 提供了一个研究微生物组与环境之间相互作用影响的绝佳系统。为了解决这个问题,我们创建了野外中型生态箱,使其经历季节性环境变化,其中一部分有垂直传播的细菌 ,一部分没有。对微生物组采样的时间模式表明, 限制了微生物的多样性。此外, 和微生物组中的一个优势成员 与两个高阶适应性特征(抗饥饿能力和寿命)的差异有关。我们在此的工作表明,非生物环境与微生物-微生物相互作用之间的相互作用可能塑造关键的宿主表型,这些表型是适应不断变化的环境的基础。我们通过探讨 与微生物组之间复杂相互作用的后果来结束本文,以便我们理解塑造宿主-微生物组相互作用的生态进化过程。