Liot Quentin, Constant Philippe
INRS-Institut Armand Frappier, Laval, Québec, Canada.
Microbiologyopen. 2016 Feb;5(1):47-59. doi: 10.1002/mbo3.310. Epub 2015 Nov 5.
The Streptomyces avermitilis genome encodes a putative high-affinity [NiFe]-hydrogenase conferring the ability to oxidize tropospheric H2 in mature spores. Here, we used a combination of transcriptomic and mutagenesis approaches to shed light on the potential ecophysiological role of the enzyme. First, S. avermitilis was either exposed to low or hydrogenase-saturating levels of H2 to investigate the impact of H2 on spore transcriptome. In total, 1293 genes were differentially expressed, with 1127 and 166 showing lower and higher expression under elevated H2 concentration, respectively. High H2 exposure lowered the expression of the Sec protein secretion pathway and ATP-binding cassette-transporters, with increased expression of genes encoding proteins directing carbon metabolism toward sugar anabolism and lower expression of NADH dehydrogenase in the respiratory chain. Overall, the expression of relA responsible for the synthesis of the pleiotropic alarmone ppGpp decreased upon elevated H2 exposure, which likely explained the reduced expression of antibiotic synthesis and stress response genes. Finally, deletion of hhySL genes resulted in a loss of H2 uptake activity and a dramatic loss of viability in spores. We propose that H2 is restricted to support the seed bank of Streptomyces under a unique survival-mixotrophic energy mode and discuss important ecological implications of this finding.
阿维链霉菌基因组编码一种假定的高亲和力[NiFe]氢化酶,赋予成熟孢子氧化对流层氢气的能力。在此,我们结合转录组学和诱变方法,以阐明该酶潜在的生态生理作用。首先,将阿维链霉菌暴露于低水平或氢化酶饱和水平的氢气中,以研究氢气对孢子转录组的影响。总共1293个基因存在差异表达,其中1127个和166个基因分别在氢气浓度升高时表达降低和升高。高氢气暴露降低了Sec蛋白分泌途径和ATP结合盒转运蛋白的表达,编码将碳代谢导向糖合成代谢的蛋白质的基因表达增加,而呼吸链中NADH脱氢酶的表达降低。总体而言,负责多效警报素ppGpp合成的relA表达在氢气暴露升高时下降,这可能解释了抗生素合成和应激反应基因表达的降低。最后,hhySL基因的缺失导致氢气摄取活性丧失以及孢子活力急剧下降。我们提出,氢气在一种独特的生存混合营养能量模式下被限制用于支持链霉菌的种子库,并讨论了这一发现的重要生态意义。