Department of Integrative Biology, University of Texas at Austin, Austin, TX 78712, USA.
Department of Biological Sciences, Texas Tech University, Lubbock, TX 79409, USA.
Trends Microbiol. 2022 Oct;30(10):997-1011. doi: 10.1016/j.tim.2022.04.003. Epub 2022 May 18.
Microbiome breeding is a new artificial selection technique that seeks to change the genetic composition of microbiomes in order to benefit plant or animal hosts. Recent experimental and theoretical analyses have shown that microbiome breeding is possible whenever microbiome-encoded genetic factors affect host traits (e.g., health) and microbiomes are transmissible between hosts with sufficient fidelity, such as during natural microbiome transmission between individuals of social animals, or during experimental microbiome transplanting between plants. To address misunderstandings that stymie microbiome-breeding programs, we (i) clarify and visualize the corresponding elements of microbiome selection and standard selection; (ii) elucidate the eco-evolutionary processes underlying microbiome selection within a quantitative genetic framework to summarize practical guidelines that optimize microbiome breeding; and (iii) characterize the kinds of host species most amenable to microbiome breeding.
微生物组选育是一种新的人工选择技术,旨在改变微生物组的遗传组成,以有益于植物或动物宿主。最近的实验和理论分析表明,只要微生物组编码的遗传因素影响宿主特征(例如健康),并且微生物组在宿主之间具有足够的保真度(例如,在社会性动物个体之间的自然微生物组传播期间,或在植物之间进行实验性微生物组移植期间),就可以进行微生物组选育。为了解决阻碍微生物组选育计划的误解,我们:(i)阐明和可视化微生物组选择和标准选择的相应要素;(ii)在数量遗传框架内阐明微生物组选择背后的生态进化过程,以总结优化微生物组选育的实用指南;(iii)描述最适合微生物组选育的宿主物种的种类。