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Cloning and expression analysis of tps and cryopreservation research of trehalose from Antarctic strain Pseudozyma sp.

机译:tps的克隆表达分析及南极假单胞菌海藻糖的超低温保存研究。

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摘要

Trehalose is a non-reducing disaccharide sugar that widely exists in a variety of organisms, such as bacteria and eukaryotes except the vertebrates. It plays an important role in a number of critical metabolic functions especially in response to stressful environmental conditions. However, the biosynthetic pathways of trehalose in cold-adapted yeast and its responses to temperature and salinity changes remain little understood. In this study, the genome of Antarctic-isolated Pseudozyma sp. NJ7 was generated from which we identified the gene coding for trehalose phosphate synthase (TPS1) and trehalose phosphate phosphatase (TPS2), the two enzymes most critical for trehalose production. The whole draft genome length of Pseudozyma sp. NJ7 was 18,021,233 bp, and encoded at least 34 rRNA operons and 72 tRNAs. The open reading frame of tps1 contained 1827 nucleotide encoding 608 amino acids with a molecular weight of 67.64 kDa, and an isoelectric point of 5.54, while tps2 contained 3948 nucleotide encoding 1315 amino acids with a molecular weight of 144.47 kDa and an isoelectric point of 6.36. The TPS1 and TPS2 protein sequences were highly homologous to Moesziomyces antarcticus T-34, but TPS2 had obvious specificity and differently with others which suggest species specificity and different evolutionary history. Expression level of tps1 gene was strongly influenced by temperature and high salinity. In addition, addition of 0.5% trehalose preserved yeast cells in the short term but was not effective for cryopreservation for more than 5 days, but still suggesting that exogenous trehalose could indeed significantly improve the survival of yeast cells under freezing conditions. Our results provided new insights on the molecular basis of cold adaptations of Antarctic Pseudozyma sp., and also generated new information on the roles trehalose play in yeast tolerance to extreme conditions in the extreme Antarctic environments.
机译:海藻糖是一种非还原性的二糖,广泛存在于除脊椎动物以外的各种生物中,例如细菌和真核生物。它在许多关键的代谢功能中起着重要作用,尤其是在应对压力环境条件下。然而,对海藻糖在冷适应酵母中的生物合成途径及其对温度和盐度变化的反应仍知之甚少。在这项研究中,南极分离的假酶菌sp。的基因组。从中产生了NJ7,我们从中鉴定出了编码海藻糖磷酸合酶(TPS1)和海藻糖磷酸磷酸酶(TPS2)的基因,这两种酶对生产海藻糖最为关键。假单胞菌sp。的整个基因组长度。 NJ7为18,021,233 bp,编码至少34个rRNA操纵子和72个tRNA。 tps1的开放阅读框包含1827个核苷酸,编码608个氨基酸,分子量为67.64 kDa,等电点为5.54,而tps2包含3948个核苷酸,编码为1315个氨基酸,分子量为144.47 kDa,等电点为6.36 。 TPS1和TPS2蛋白序列与南极Moesziomyces T-34具有高度同源性,但是TPS2具有明显的特异性,并且与其他物种不同,这表明物种特异性和不同的进化史。温度和高盐度强烈影响tps1基因的表达水平。此外,在短期内添加0.5%的海藻糖可保存酵母细胞,但对冷冻保存超过5天无效,但仍表明外源海藻糖确实可以显着提高酵母细胞在冷冻条件下的存活率。我们的结果为南极假酶菌的冷适应的分子基础提供了新的见解,并且还产生了关于海藻糖在极端南极环境中对极端条件的酵母耐受中发挥作用的新信息。

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