Department of Marine Biology, Leon H. Charney School of Marine Sciences, University of Haifa, Haifa, Israel.
Department of Life and Environmental Sciences, Polytechnic University of Marche, Ancona, Italy.
Environ Microbiol. 2020 Aug;22(8):3593-3607. doi: 10.1111/1462-2920.15165. Epub 2020 Aug 5.
In this study, we used in situ transplantations to provide the first evidence of horizontal acquisition of cyanobacterial symbionts by a marine sponge. The acquisition of the symbionts by the host sponge Petrosia ficiformis, which was observed in distinct visible patches, appeared several months after transplantation and at different times on different sponge specimens. We further used 16S rRNA gene amplicon sequencing of genomic DNA (gDNA) and complementary DNA (cDNA) and metatranscriptomics to investigate how the acquisition of the symbiotic cyanobacterium Candidatus Synechococcus feldmannii perturbed the diverse microbiota associated with the host P. ficiformis. To our surprise, the microbiota remained relatively stable during cyanobacterial symbiont acquisition at both structural (gDNA content) and activity (cDNA expression) levels. At the transcriptomic level, photosynthesis was the primary function gained following the acquisition of cyanobacteria. Genes involved in carotene production and oxidative stress tolerance were among those highly expressed by Ca. S. feldmannii, suggesting that this symbiont may protect itself and its host from damaging light radiation.
在这项研究中,我们通过原位移植提供了海洋海绵横向获得蓝细菌共生体的第一个证据。在宿主海绵 Petrosia ficiformis 中观察到的共生体的获得,以明显可见的斑块形式出现,在移植后数月,并在不同的海绵标本上不同时间出现。我们进一步使用基因组 DNA(gDNA)和互补 DNA(cDNA)的 16S rRNA 基因扩增子测序和宏转录组学来研究共生蓝细菌 Candidatus Synechococcus feldmannii 的获得如何扰乱与宿主 P. ficiformis 相关的多样化微生物群。令我们惊讶的是,在蓝细菌共生体获得过程中,微生物群在结构(gDNA 含量)和活性(cDNA 表达)水平上保持相对稳定。在转录组水平上,光合作用是获得蓝藻后获得的主要功能。参与类胡萝卜素生产和氧化应激耐受的基因是 Ca. S. feldmannii 高度表达的基因之一,这表明这种共生体可能保护自身及其宿主免受有害光辐射的伤害。