生物
硅藻
细菌
微生物群
微生物代谢
微生物学
植物
遗传学
作者
Ahmed A. Shibl,Ashley Isaac,Michael A. Ochsenkühn,Anny Cárdenas,Cong Fei,Gregory Behringer,Marc Arnoux,Nizar Drou,Miraflor P. Santos,Kristin C. Gunsalus,Christian R. Voolstra,Shady A. Amin
标识
DOI:10.1073/pnas.2012088117
摘要
Significance Phytoplankton are major primary producers in the marine environment that excrete a wide range of metabolites. These exudates support the growth of surrounding bacteria that in turn provide phytoplankton cells with resources and growth cofactors to proliferate. Unlike multicellular eukaryotes with dedicated structures housing microbiomes, mechanisms enabling unicellular eukaryotic phytoplankton hosts to modulate potential symbionts and opportunists within a natural microbial community are unknown. Exposure of a host phytoplankton cell to its natural microbial community triggers major transcriptional and metabolic reprogramming to release unique secondary metabolites that selectively enable growth and attachment of symbiotic taxa while simultaneously suppressing the colonization of nonsymbiont bacteria. These results suggest strong and highly selective microbiome-modulating strategies shared across the unicellular and multicellular eukaryotic lineages.
科研通智能强力驱动
Strongly Powered by AbleSci AI