Institute of Biology, Leiden University, 2333 BE, Leiden, The Netherlands.
ISME J. 2023 Sep;17(9):1355-1357. doi: 10.1038/s41396-023-01479-w. Epub 2023 Jul 31.
Experimental evolution in a laboratory helps researchers to understand the genetic and phenotypic background of adaptation under a particular condition. Simultaneously, the simplified environment that represents certain aspects of a complex natural niche permits the dissection of relevant parameters behind the selection, including temperature, oxygen availability, nutrients, and biotic factors. The presence of other microorganisms or a host has a major influence on microbial evolution that often differs from the adaptation paths observed in response to abiotic conditions. In the current issue of the ISME Journal, Cosetta and colleagues reveal how cross-kingdom interaction representing the cheese microbiome succession promotes distinct evolution of the food- and animal-associated bacterium, . The authors also identified a global regulator-dependent adaption that leads to evolved derivatives exhibiting reduced pigment production and colony morphologies in addition to altered differentiation phenotypes that potentially contribute to increased fitness.
实验室中的实验进化有助于研究人员了解特定条件下适应的遗传和表型背景。同时,简化的环境代表了复杂自然生态位的某些方面,允许对选择背后的相关参数进行剖析,包括温度、氧气可用性、营养物质和生物因素。其他微生物或宿主的存在对微生物进化有重大影响,这通常与对非生物条件的适应途径不同。在本期的《ISME 杂志》中,Cosetta 及其同事揭示了代表奶酪微生物组演替的跨王国相互作用如何促进与食物和动物相关的细菌的独特进化。作者还确定了一种全局调控因子依赖性适应,导致进化衍生的菌株表现出减少色素产生和菌落形态的特征,以及改变的分化表型,这可能有助于提高适应性。