Hespeels Boris, Li Xiang, Flot Jean-François, Pigneur Lise-Marie, Malaisse Jeremy, Da Silva Corinne, Van Doninck Karine
LEGE laboratory, URBE, Department of Biology, University of Namur, Namur, Belgium.
Department of Genetics, Evolution and Environment, University College London, London, United Kingdom.
PLoS One. 2015 Jul 10;10(7):e0131313. doi: 10.1371/journal.pone.0131313. eCollection 2015.
The disaccharide sugar trehalose is essential for desiccation resistance in most metazoans that survive dryness; however, neither trehalose nor the enzymes involved in its metabolism have ever been detected in bdelloid rotifers despite their extreme resistance to desiccation. Here we screened the genome of the bdelloid rotifer Adineta vaga for genes involved in trehalose metabolism. We discovered a total of four putative trehalose-6-phosphate synthase (TPS) and seven putative trehalase (TRE) gene copies in the genome of this ameiotic organism; however, no trehalose-6-phosphate phosphatase (TPP) gene or domain was detected. The four TPS copies of A. vaga appear more closely related to plant and fungi proteins, as well as to some protists, whereas the seven TRE copies fall in bacterial clades. Therefore, A. vaga likely acquired its trehalose biosynthesis and hydrolysis genes by horizontal gene transfers. Nearly all residues important for substrate binding in the predicted TPS domains are highly conserved, supporting the hypothesis that several copies of the genes might be functional. Besides, RNAseq library screening showed that trehalase genes were highly expressed compared to TPS genes, explaining probably why trehalose had not been detected in previous studies of bdelloids. A strong overexpression of their TPS genes was observed when bdelloids enter desiccation, suggesting a possible signaling role of trehalose-6-phosphate or trehalose in this process.
二糖海藻糖对于大多数能够在干燥环境中存活的后生动物的抗干燥能力至关重要;然而,尽管蛭形轮虫对干燥具有极强的抵抗力,但在其体内从未检测到海藻糖或参与其代谢的酶。在此,我们在蛭形轮虫阿迪内塔蛭(Adineta vaga)的基因组中筛选了参与海藻糖代谢的基因。我们在这种非减数分裂生物的基因组中总共发现了四个假定的海藻糖 - 6 - 磷酸合酶(TPS)基因拷贝和七个假定的海藻糖酶(TRE)基因拷贝;然而,未检测到海藻糖 - 6 - 磷酸磷酸酶(TPP)基因或结构域。阿迪内塔蛭的四个TPS基因拷贝似乎与植物和真菌的蛋白质以及一些原生生物的关系更为密切,而七个TRE基因拷贝则属于细菌进化枝。因此,阿迪内塔蛭可能通过水平基因转移获得了其海藻糖生物合成和水解基因。在预测的TPS结构域中,几乎所有对底物结合重要的残基都高度保守,这支持了这些基因的几个拷贝可能具有功能的假设。此外,RNA测序文库筛选表明,与TPS基因相比,海藻糖酶基因高度表达,这可能解释了为什么在先前对蛭形轮虫的研究中未检测到海藻糖。当蛭形轮虫进入干燥状态时,观察到它们的TPS基因强烈过表达,这表明海藻糖 - 6 - 磷酸或海藻糖在此过程中可能具有信号传导作用。