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首页> 外文期刊>FEMS Microbiology Ecology >Increased acidification has a profound effect on the interactions between the cyanobacterium Synechococcus sp. WH7803 and its viruses
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Increased acidification has a profound effect on the interactions between the cyanobacterium Synechococcus sp. WH7803 and its viruses

机译:增加的酸化对蓝细菌Synechococcus sp。之间的相互作用具有深远的影响。 WH7803及其病毒

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Increased anthropogenic CO_2 emissions are expected to cause a drop in oceanic pH of c. 0.4 units within this century. According to current assessments, the consequences of this are limited for oceanic Cyanobacteria, and absent for viruses. We investigated the effect of pH on the life history of cyanophage S-PM2 and its host, Synechococcus sp. WH7803, at current pH concentrations and at predicted future concentrations. We identified significant negative effects of decreasing pH on Synechococcus growth rate, with profound negative implications for S-PM2 biogenesis and its infection cycle. The duration of the S-PM2 eclipse period increased significantly with decreasing pH. In contrast, the latent period was shorter at pH 7.6 than at pH 8, coinciding with a reduction in S-PM2 burst size from 20.1 ± 3.2 progeny phages per cell at pH 8 to 5.68 ± 4.4 progeny phages per cell at pH 7.6. At pH 7, there was no detectable progeny release. The extracellular stage of S-PM2 was insensitive to pH changes, but sensitive to light, with significant loss in infectivity (0.35-0.38 day~(-1)) at relatively low irradiances (> 130 lmol photon m~(-2) s~(-1)). Overall, the results suggest that pH has significant influence on cyanobacterial growth with important implications for the interactions between Cyanobacteria and their viruses.
机译:人为增加的CO_2排放预计会导致海洋pH值下降。本世纪内的0.4个单位。根据目前的评估,其后果仅限于海洋蓝细菌,而对于病毒则没有。我们调查了pH对蓝藻S-PM2及其宿主Synechococcus sp。的生活史的影响。 WH7803,当前的pH浓度和预计的未来浓度。我们发现降低pH值对Synechococcus生长速率具有显着的负面影响,对S-PM2生物发生及其感染周期具有深远的负面影响。随着pH值的降低,S-PM2食期的持续时间显着增加。相反,在pH 7.6时的潜伏期比在pH 8时短,这与S-PM2爆发大小从pH 8的每细胞20.1±3.2个子代噬菌体减少到pH 7.6的5.68±4.4个细胞的后代噬菌体一致。在pH 7时,没有可检测到的后代释放。 S-PM2的细胞外阶段对pH值不敏感,但对光敏感,在相对较低的辐照度(> 130 lmol光子m〜(-2)s时,感染性显着丧失(0.35-0.38天〜(-1))。 〜(-1))。总体而言,结果表明pH值对蓝细菌的生长具有重大影响,对蓝细菌与其病毒之间的相互作用具有重要意义。

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