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红海一种新型聚球藻分离株的基因组含有可转录的相容性溶质生物合成基因。

The genome of a novel isolate of Prochlorococcus from the Red Sea contains transcribed genes for compatible solute biosynthesis.

机构信息

Marine Microbial Ecology Lab, Red Sea Research Center, King Abdullah University of Science and Technology (KAUST), Thuwal 23955-6900, Kingdom of Saudi Arabia.

Biology Department, New York University Abu Dhabi, P.O. Box 129188, Abu Dhabi, UAE.

出版信息

FEMS Microbiol Ecol. 2018 Nov 1;94(12). doi: 10.1093/femsec/fiy182.

Abstract

Marine microbes possess genomic and physiological adaptations to cope with varying environmental conditions. So far, the effects of high salinity on the most abundant marine photoautotrophic organism, Prochlorococcus, in marine oligotrophic environments, are mostly unknown. Here, we report the isolation of a new Prochlorococcus strain (RSP50) belonging to high-light (HL) clade II from the Red Sea, one of the warmest and most saline bodies of water in the global oceans. A comparative genomic analysis identified a set of 59 genes that were exclusive to RSP50 relative to currently available Prochlorococcus genomes, the majority of which (70%) encode for hypothetical proteins of unknown function. However, three of the unique genes encode for a complete pathway for the biosynthesis of the compatible solute glucosylglycerol, and are homologous to enzymes found in the sister lineage Synechococcus. Metatranscriptomic analyses of this metabolic pathway in the water column of the Red Sea revealed that the corresponding genes were constitutively transcribed, independent of depth and light, suggesting that osmoregulation using glucosylglycerol is a general feature of HL II Prochlorococcus in the Red Sea.

摘要

海洋微生物具有基因组和生理适应性,可以应对不同的环境条件。到目前为止,高盐度对海洋贫营养环境中最丰富的海洋光自养生物——聚球藻的影响大多未知。在这里,我们报告了从红海分离到一种新的聚球藻株(RSP50),属于高光(HL)II 群。对比较基因组分析确定了一组 59 个相对于现有聚球藻基因组特有的基因,其中大多数(70%)编码未知功能的假设蛋白。然而,三个独特的基因编码完整的合成相容溶质葡萄糖基甘油的途径,与在姊妹谱系聚球藻中发现的酶同源。对红海水柱中该代谢途径的宏转录组分析表明,相应的基因是组成型转录的,与深度和光照无关,这表明使用葡萄糖基甘油进行渗透调节是红海 HL II 聚球藻的普遍特征。

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