Université de Montpellier 2, CNRS-UMR5119. Laboratoire Ecosystèmes Lagunaires, Case 093, Place Eugène Bataillon, 34095 Montpellier Cedex 5, France.
Environ Microbiol. 2010 Mar;12(3):628-41. doi: 10.1111/j.1462-2920.2009.02103.x. Epub 2009 Nov 25.
The current consensus concerning the prevalence of lytic and lysogenic phage life cycles in aquatic systems is that the host physiological state may influence viral strategies, lysogeny being favoured when hosts have reduced metabolic rates. We explored this hypothesis, by following phage cycle dynamics, host physiological state and metabolic activity over an annual cycle in three lakes subjected to strong seasonal fluctuations, including 4-5 months of ice cover. We observed marked seasonal dynamics of viral and bacterial communities, with low bulk and cell-specific bacterial metabolism in winter, and a dramatic increase in injured bacteria under the ice cover in all lakes. This period was accompanied by contrasting patterns in the proportion of lysogenic cells. In the eutrophic lake, times of low bacterial metabolic rates and high proportion of damaged cells corresponded to highest levels of lysogeny, supporting the notion that hosts are a 'refuge' for viruses. In the two unproductive lakes, peaks of injured cells corresponded to a minimum of lysogeny, suggesting an 'abandon the sinking ship' response, where the prophage replicates before the loss of genome. We suggest that these diverging responses to the host physiological state are not contradictory, but rather that there may be thresholds of cell stress and metabolic activity leading to one or the other response.
目前对于水生系统中裂解和溶源噬菌体生活周期流行程度的共识是,宿主的生理状态可能会影响病毒的策略,当宿主代谢率降低时,溶源就会占优势。我们通过在三个受强烈季节性波动影响的湖泊中进行为期一年的研究,跟踪噬菌体周期动态、宿主生理状态和代谢活性,从而探索了这一假说,这些湖泊包括长达 4-5 个月的冰期。我们观察到病毒和细菌群落的明显季节性动态,冬季的总细菌和细胞特异性细菌代谢率较低,在所有湖泊的冰下都有大量受损细菌急剧增加。在所有湖泊的冰下都有大量受损细菌急剧增加。在所有湖泊的冰下都有大量受损细菌急剧增加。这一时期与溶原细胞比例的对比模式相对应。在富营养化湖泊中,当细菌代谢率低和受损细胞比例高时,溶源的水平最高,这支持了宿主是病毒的“避难所”的观点。在两个非生产性湖泊中,受损细胞的峰值对应于最低的溶原水平,这表明存在“放弃沉没的船只”的反应,即前体噬菌体在基因组丢失之前进行复制。我们认为,这些对宿主生理状态的不同反应并不是相互矛盾的,而是可能存在导致一种或另一种反应的细胞应激和代谢活动的阈值。