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Alien vs. predator: bacterial challenge alters coral microbiomes unless controlled by Halobacteriovorax predators

机译:外星人与捕食者:细菌的挑战会改变珊瑚的微生物群除非受到嗜盐菌灭食者的控制

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摘要

Coral microbiomes are known to play important roles in organismal health, response to environmental stress, and resistance to disease. The coral microbiome contains diverse assemblages of resident bacteria, ranging from defensive and metabolic symbionts to opportunistic bacteria that may turn harmful in compromised hosts. However, little is known about how these bacterial interactions influence the mechanism and controls of overall structure, stability, and function of the microbiome. We sought to test how coral microbiome dynamics were affected by interactions between two bacteria: Vibrio coralliilyticus, a known temperature-dependent pathogen of some corals, and Halobacteriovorax, a unique bacterial predator of Vibrio and other gram-negative bacteria. We challenged reef-building coral with V. coralliilyticus in the presence or absence of Halobacteriovorax predators, and monitored microbial community dynamics with 16S rRNA gene profiling time-series. Vibrio coralliilyticus inoculation increased the mean relative abundance of Vibrios by greater than 35% from the 4 to 8 hour time point, but not in the 24 & 32 hour time points. However, strong secondary effects of the Vibrio challenge were also observed for the rest of the microbiome such as increased richness (observed species), and reduced stability (increased beta-diversity). Moreover, after the transient increase in Vibrios, two lineages of bacteria (Rhodobacterales and Cytophagales) increased in coral tissues, suggesting that V. coralliilyticus challenge opens niche space for these known opportunists. Rhodobacterales increased from 6.99% (±0.05 SEM) to a maximum mean relative abundance of 48.75% (±0.14 SEM) in the final time point and Cytophagales from <0.001% to 3.656%. Halobacteriovorax predators are commonly present at low-abundance on coral surfaces. Based on the keystone role of predators in many ecosystems, we hypothesized that Halobacteriovorax predators might help protect corals by consuming foreign or “alien” gram negative bacteria. Halobacteriovorax inoculation also altered the microbiome but to a lesser degree than V. coralliilyticus, and Halobacteriovorax were never detected after inoculation. Simultaneous challenge with both V. coralliilyticus and predatory Halobacteriovorax eliminated the increase in V. coralliilyticus, ameliorated changes to the rest of the coral microbiome, and prevented the secondary blooms of opportunistic Rhodobacterales and Cytophagales seen in the V. coralliilyticus challenge. These data suggest that, under certain circumstances, host-associated bacterial predators may mitigate the ability of other bacteria to destabilize the microbiome.
机译:众所周知,珊瑚微生物群在机体健康,对环境压力的反应以及对疾病的抵抗力中起重要作用。珊瑚微生物组包含多种多样的常驻细菌,从防御性和代谢性共生体到机会性细菌,这些细菌可能会对受损宿主产生危害。然而,关于这些细菌相互作用如何影响微生物组整体结构,稳定性和功能的机制和控制知之甚少。我们试图测试两种细菌之间的相互作用如何影响珊瑚的微生物组动力学:珊瑚弧菌弧菌(一种已知的温度依赖于某些珊瑚的病原体)和嗜盐菌弧菌(一种弧菌和其他革兰氏阴性细菌的独特捕食者)。我们在存在或不存在卤代噬菌体捕食者的情况下,用V. Coralliilyticus向造礁珊瑚挑战,并用16S rRNA基因谱分析时间序列监测微生物群落动态。从4到8小时的时间点,溶珊瑚弧菌的接种使弧菌的平均相对丰度增加了35%以上,但在24和32小时的时间点却没有。但是,对于其余的微生物组,也观察到了弧菌攻击的强烈次要作用,例如增加的丰富度(观察到的物种)和降低的稳定性(增加的β多样性)。此外,在弧菌中短暂增加后,珊瑚组织中细菌的两个谱系(红细菌和细胞噬菌体)增加,这表明溶血弧菌的挑战为这些已知的机会主义者打开了利基空间。在最后一个时间点,红细菌从6.99%(±0.05 SEM)增加到最大平均相对丰度为48.75%(±0.14 SEM),而细胞噬菌体从<0.001%增加到3.656%。嗜盐杆菌食肉动物通常以低丰度存在于珊瑚表面。基于捕食者在许多生态系统中的关键作用,我们假设嗜盐菌食肉动物可以通过摄入外来或“外来”革兰氏阴性细菌来帮助保护珊瑚。 Halobacteriovorax 接种也改变了微生物组,但程度小于 V。接种后再也没有检测到珊瑚溶菌嗜盐杆菌涡旋。同时使用 V挑战。 Coralliilyticus 和掠食性 Halobacteriovorax 消除了 V的增加。 Coralliilyticus 改善了其余珊瑚微生物组的变化,并防止了 V中出现的机会性 Rhodobacterales Cytophagales 的二次开花。 Coralliilyticus 挑战。这些数据表明,在某些情况下,宿主相关的细菌捕食者可能会减轻其他细菌破坏微生物组的能力。

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