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温度诱导淡水噬藻体 AS-1 前噬菌体的激活。

Temperature-induced activation of freshwater Cyanophage AS-1 prophage.

机构信息

Department of Biological Sciences, Seton Hall University, 400 South Orange Avenue, South Orange, NJ 07079, USA.

出版信息

Acta Histochem. 2011 May;113(3):294-9. doi: 10.1016/j.acthis.2009.11.003. Epub 2010 Feb 6.

Abstract

Synechococcus sp. IU 625 is one of the freshwater cyanobacteria responsible for harmful algal blooms (HAB). Cyanophages can serve as natural control agents and may be responsible for algal bloom prevention and disappearance. Cyanophage AS-1, which infects Synechococcus sp. IU 625 (Anacystis nidulans) and Synechococcus cedrorum, plays an important role in the environment, significantly altering the numbers of its hosts. Since seasonal (temperature-dependent) lytic induction of cyanobacterial prophage has been proposed to affect seawater algal blooms, we investigated if the AS-1 lytic cycle could be induced by a shift to high temperature. Our hypothesis was confirmed, as more phages were released at 35°C than at 24°C, with maximal induction observed with a shift from 24 to 35°C. Furthermore, transmission electron microscopy (TEM) images provide direct evidence of lysogenic to lytic conversion with temperature shift. Thus, temperature is an important inducer for AS-1 conversion from lysogenic to lytic cycle and could have applications in terms of modulating cyanobacterial populations in freshwater aquatic environments. The study gives insight into the effect of climate change on the interaction between cyanophage and cyanobacteria in freshwater ecosystems.

摘要

集胞藻 sp. IU 625 是引发有害藻华(HAB)的淡水蓝藻之一。噬藻体能充当自然控制剂,可能对预防和消除藻华起到作用。噬藻体 AS-1 可感染集胞藻 sp. IU 625(鱼腥藻)和集胞藻 cedrorum,在环境中发挥着重要作用,极大地改变了宿主的数量。由于已提出温度依赖性裂解诱导蓝藻前噬菌体的季节性变化会影响海水藻类的爆发,因此我们研究了高温是否可以诱导 AS-1 裂解周期。我们的假设得到了证实,35°C 时释放的噬菌体比 24°C 时更多,而从 24°C 升高到 35°C 时诱导作用最大。此外,透射电子显微镜(TEM)图像提供了温度变化时溶源到裂解转换的直接证据。因此,温度是 AS-1 从溶源到裂解周期转换的重要诱导剂,在调节淡水水生环境中的蓝藻种群方面具有应用价值。该研究深入了解了气候变化对淡水生态系统中噬藻体与蓝藻相互作用的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/46f5/2891208/d6c4abd26faa/nihms-162419-f0001.jpg

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