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Functional metagenomic screen reveals new and diverse microbial rhodopsins

机译:功能性宏基因组学筛选揭示了新的和多种微生物视紫红质

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摘要

Ion-translocating retinylidene rhodopsins are widely distributed among marine and freshwater microbes. The translocation is light-driven, contributing to the production of biochemical energy in diverse microbes. Until today, most microbial rhodopsins had been detected using bioinformatics based on homology to other rhodopsins. In the past decade, there has been increased interest in microbial rhodopsins in the field of optogenetics since microbial rhodopsins were found to be most useful in vertebrate neuronal systems. Here we report on a functional metagenomic assay for detecting microbial rhodopsins. Using an array of narrow pH electrodes and light-emitting diode illumination, we were able to screen a metagenomic fosmid library to detect diverse marine proteorhodopsins and an actinorhodopsin based solely on proton-pumping activity. Our assay therefore provides a rather simple phenotypic means to enrich our understanding of microbial rhodopsins without any prior knowledge of the genomic content of the environmental entities screened.
机译:离子转运视黄叉视紫红质广泛分布于海洋和淡水微生物中。易位是光驱动的,有助于在多种微生物中产生生化能。直到今天,大多数微生物视紫红质是使用基于与其他视紫红质同源性的生物信息学方法检测到的。在过去的十年中,由于发现了微生物视紫红质在脊椎动物神经元系统中最有用,因此在光遗传学领域对微生物视紫红质的兴趣日益增加。在这里我们报告检测细菌视紫红质的功能宏基因组测定。使用狭窄的pH电极阵列和发光二极管照明,我们能够筛选出宏基因组的fosmid文库,以仅基于质子泵浦活性检测各种海洋蛋白视紫红质和放线菌视紫红质。因此,我们的测定提供了一种相当简单的表型手段,可以丰富我们对微生物视紫红质的了解,而无需事先了解所筛选环境实体的基因组含量。

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