首页> 外文期刊>Genomics >Genome analysis provides insights into crude oil degradation and biosurfactant production by extremely halotolerant Halomonas desertis G11 isolated from Chott El-Djerid salt-lake in Tunisian desert
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Genome analysis provides insights into crude oil degradation and biosurfactant production by extremely halotolerant Halomonas desertis G11 isolated from Chott El-Djerid salt-lake in Tunisian desert

机译:基因组分析通过在突尼斯沙漠中的Chott El-Djerid盐湖中分离出来的原油降解和生物活性剂生产的洞察。

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Here, we report the genomic features and the bioremediation potential of Halomonas desertis G11, a new halophilic species which uses crude oil as a carbon and energy source and displays intrinsic resistance to salt stress conditions (optimum growth at 10% NaCl). G11 genome (3.96 Mb) had a mean GC content of 57.82%, 3622 coding sequences, 480 subsystems and 64 RNA genes. Annotation predicted 38 genes involved in osmotic stress including the biosynthesis of osmoprotectants glycine-betaine, ectoine and osmoregulated periplasmic glucans. Genome analysis revealed also the versatility of the strain for emulsifying crude oil and metabolizing hydrocarbons. The ability of G11 to degrade crude oil components and to secrete a glycolipid biosurfactant with satisfying properties was experimentally confirmed and validated. Our results help to explain the exceptional capacity of G11 to survive at extreme desertic conditions, and highlight the metabolic features of this organism that has biotechnological and ecological potentialities.
机译:在这里,我们报告了嗜酸盐烟草G11的基因组特征和生物修复潜力,这是一种新的嗜热物种,其使用原油作为碳和能量源,显示出盐胁迫条件的固有抗性(10%NaCl处的最佳生长)。 G11基因组(3.96MB)的平均GC含量为57.82%,3622个编码序列,480个子系统和64个RNA基因。注释预测参与渗透应激的38个基因,包括甘氨酸甘氨酸甘氨酸甘氨酸甘氨酸甘氨酸 - 甜菜碱和OsMoregulation的周质葡聚糖的生物合成。基因组分析还揭示了乳化原油和代谢烃的菌株的多功能性。通过实验证实和验证了G11降解原油组分和分泌糖脂和分泌糖脂化合物的能力的能力。我们的结果有助于解释G11在极端沙漠条件下生存的卓越能力,并突出了该生物体具有生物技术和生态潜力的这种组织的代谢特征。

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