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Isolation, differentiation and biodiversity of ureolytic bacteria of Qatari soil and their potential in microbially induced calcite precipitation (MICP) for soil stabilization

机译:Qatari土壤Qatarytic细菌的分离,分化和生物多样性及其在微生物诱导方解石沉淀(MICP)中的稳定土壤稳定化

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摘要

Biomineralization plays a key role in modifying the geological properties of soil, thereby stabilizing it against wind erosion, especially in areas characterized by harsh weather and harsh soil (calcareous and arid); i.e. Arabic Gulf region. Among soil microorganisms, ureolytic bacteria are capable of modifying soil characteristics and thus, inducing biomineralization. This research investigated the occurrence and diversity of ureolytic bacteria in Qatari soils, specifically to study their acquired potential to adapt to harsh conditions exhibiting ureolytic activity. Soil samples were collected from various locations in Qatar and were used to isolate the indigenous ureolytic bacteria. It was noticed that most of the ureolytic bacteria in Qatari soil belong to the genus Bacillus mainly Bacillus cereus. Identification and differentiation of 18 ureolytic isolates were performed using MALDI-TOF MS techniques while ribotyping (16S rRNA) molecular technique was used mainly for 6 selected strains. This study not only shows the diversity of species of ureolytic bacteria in Qatari soil but also shows the diversity in their protein profiles, which confirms that bacteria have adapted well to the harsh environment. In addition, the strains were evaluated based on a newly modified screening method in this work; i.e. production of arbitrary urease activity (AUA). Thus, the strains showing the highest AUA, exhibited the highest capability to produce urease enzymes induced by urea. Analysis of calcium carbonate precipitation utilizing SEM-EDX showed that the ureolytic bacteria also play a significant role in the precipitation of minerals such as CaCO3, in the presence of urea in soil. Therefore, this research showed a high occurrence of indigenous Bacillus bacteria in Qatari soil that can perform biomineralization and thus can be helpful, if properly stimulated, in enhancing soil stabilization, and for other local applications as well, since they are adapted to these soil and weather conditions.
机译:生物蛋白化在改变土壤的地质特性方面发挥着关键作用,从而稳定抗风腐蚀,特别是在苛刻的天气和苛刻的土壤(钙质和干旱)为特征的区域;即阿拉伯海湾地区。在土壤微生物中,尿溶细菌能够改变土壤特性,从而诱导生物抗体。本研究研究了Qatari土壤中ureolytic细菌的发生和多样性,特别是研究其获得的潜力,以适应表现出ureolytic活性的恶劣条件。从卡塔尔的各种位置收集土壤样品,用来分离土着尿素细菌。注意到Qatari土壤中大多数Qyolytic细菌属于芽孢杆菌主要芽孢杆菌。使用MALDI-TOF MS技术进行18 ureolytic分离株的鉴定和分化,而核糖型(16S rRNA)分子技术主要用于6个选定的菌株。这项研究不仅表明了Qatari土壤中尿溶细菌种类的多样性,而且表明其蛋白质谱中的多样性证实细菌对恶劣的环境很好。此外,基于这项工作的新改性的筛选方法评估菌株;即生产任意脲酶活性(Aua)。因此,显示出最高Aua的菌株表现出尿素诱导的脲酶的最高能力。利用SEM-EDX的碳酸钙沉淀分析表明,在土壤中尿素存在下,ureolytic细菌在诸如Caco3的矿物质的沉淀中也发挥着重要作用。因此,该研究表明,Qatari土壤中的土着土着芽孢杆菌发生高,可以进行生物碳化,因此可以有助于,如果适当地刺激,在提高土壤稳定和其他局部应用方面也有效,因为它们适应这些土壤和天气状况。

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  • 来源
    《RSC Advances》 |2018年第11期|共10页
  • 作者单位

    Qatar Univ Coll Arts &

    Sci Dept Biol &

    Environm Sci POB 2713 Doha Qatar;

    Qatar Univ Coll Arts &

    Sci Dept Biol &

    Environm Sci POB 2713 Doha Qatar;

    Qatar Univ Coll Arts &

    Sci Dept Biol &

    Environm Sci POB 2713 Doha Qatar;

    Lehigh Univ Dept Civil &

    Environm Engn Bethlehem PA 18015 USA;

    Qatar Univ Coll Arts &

    Sci Dept Biol &

    Environm Sci POB 2713 Doha Qatar;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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