Bolhuis Henk, Martín-Cuadrado Ana Belén, Rosselli Riccardo, Pašić Lejla, Rodriguez-Valera Francisco
Department of Marine Microbiology and Biogeochemistry, Royal Netherlands Institute for Sea Research (NOIZ) and Utrecht University, Den Hoorn, the Netherlands.
Evolutionary Genomics Group, Departamento de Producción Vegetal y Microbiología, Universidad Miguel Hernández, San Juan de Alicante, Alicante, Spain.
BMC Genomics. 2017 Jul 3;18(1):510. doi: 10.1186/s12864-017-3892-2.
Haloquadratum walsbyi dominates saturated thalassic lakes worldwide where they can constitute up to 80-90% of the total prokaryotic community. Despite the abundance of the enigmatic square-flattened cells, only 7 isolates are currently known with 2 genomes fully sequenced and annotated due to difficulties to grow them under laboratory conditions. We have performed a transcriptomic analysis of one of these isolates, the Spanish strain HBSQ001 in order to investigate gene transcription under light and dark conditions.
Despite a potential advantage for light as additional source of energy, no significant differences were found between light and dark expressed genes. Constitutive high gene expression was observed in genes encoding surface glycoproteins, light mediated proton pumping by bacteriorhodopsin, several nutrient uptake systems, buoyancy and storage of excess carbon. Two low expressed regions of the genome were characterized by a lower codon adaptation index, low GC content and high incidence of hypothetical genes.
Under the extant cultivation conditions, the square hyperhalophile devoted most of its transcriptome towards processes maintaining cell integrity and exploiting solar energy. Surface glycoproteins are essential for maintaining the large surface to volume ratio that facilitates light and organic nutrient harvesting whereas constitutive expression of bacteriorhodopsin warrants an immediate source of energy when light becomes available.
沃氏嗜盐碱杆菌在全球的饱和海水湖中占主导地位,在这些湖泊中,它们可占原核生物群落总数的80%-90%。尽管存在大量神秘的方形扁平细胞,但由于在实验室条件下难以培养,目前仅已知7株分离株,其中2株的基因组已完全测序和注释。我们对其中一株分离株——西班牙菌株HBSQ001进行了转录组分析,以研究光照和黑暗条件下的基因转录情况。
尽管光作为额外能源具有潜在优势,但在光照和黑暗条件下表达的基因之间未发现显著差异。在编码表面糖蛋白、细菌视紫红质介导的光驱动质子泵、几种营养物质摄取系统、浮力和过量碳储存的基因中观察到组成型高基因表达。基因组的两个低表达区域的特征是密码子适应指数较低、GC含量较低且假设基因的发生率较高。
在现有的培养条件下,方形嗜盐菌将其大部分转录组用于维持细胞完整性和利用太阳能的过程。表面糖蛋白对于维持有利于光和有机营养物质获取的大表面积与体积比至关重要,而细菌视紫红质的组成型表达保证了在有光时能立即获得能量来源。