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The Bacterial Symbiont Phaeobacter inhibens Shapes the Life History of Its Algal Host Emiliania huxleyi

机译:细菌共生细菌hihibens塑造了其藻类寄主Emiliania huxleyi的生活史

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Marine microbes form host-associated biofilm communities that are shaped by complex interactions between bacteria and their host. The roseobacter Phaeobacter inhibens exploits both symbiotic and pathogenic niches while interacting with its microalgal host Emiliania huxleyi. During co-cultivation over extended periods with E. huxleyi, we show that P. inhibens selectively kills two host cell types, the diploid calcifying strain and the haploid flagellated strain. Meanwhile, various non-calcifying diploid strains are resistant to this pathogen or the pathogen is avirulent to this cell type. This differential pathogenesis has the potential of dramatically altering the composition of E. huxleyi blooms, which are typically dominated by the roseobacter-susceptible calcifying strain. This cell type makes calcite plates, which are an important sink in the marine carbon cycle and forms part of the marine paleobotanic record. P. inhibens kills the haploid cells, which have been proposed as critical to the survival of the algae, as they readily escape both eukaryotic predation and viral infection. Consequently, bacteria such as P. inhibens could influence E. huxleyi’s life history by selective pathogenesis, thereby altering the composition of cell types within its populations and its bloom-bust lifestyle.
机译:海洋微生物形成与宿主相关的生物膜群落,该群落通过细菌与其宿主之间的复杂相互作用而形成。玫瑰杆菌Phieobacter inhibens与它的微藻宿主Emiliania huxleyi相互作用时,利用了共生和致病位。在与赫氏大肠杆菌(E. huxleyi)的长期共培养过程中,我们显示Inhibens选择性杀死两种宿主细胞类型,即二倍体钙化菌株和单倍鞭毛菌株。同时,各种非钙化二倍体菌株对该病原体具有抗性或该病原体对该细胞类型无毒。这种不同的发病机制有可能显着改变赫x黎花大肠埃希氏菌的组成,而后者通常由对玫瑰花杆菌敏感的钙化菌株主导。这种细胞类型形成方解石板,方解石板是海洋碳循环中的重要汇,并构成海洋古生物记录的一部分。 Inhibens可以杀死单倍体细胞,这些单倍体细胞被认为对藻类的生存至关重要,因为它们很容易逃脱真核生物捕食和病毒感染。因此,诸如Inhibens的细菌可能通过选择性致病机制来影响赫。黎大肠杆菌的生活史,从而改变其种群内细胞类型的组成及其繁华的生活方式。

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