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首页> 外文期刊>BMC Microbiology >Molecular and taxonomic characterization of arsenic (As) transforming Bacillus sp. strain IIIJ3–1 isolated from As-contaminated groundwater of Brahmaputra river basin, India
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Molecular and taxonomic characterization of arsenic (As) transforming Bacillus sp. strain IIIJ3–1 isolated from As-contaminated groundwater of Brahmaputra river basin, India

机译:砷(AS)转化芽孢杆菌的分子和分类特征。 菌株IIIJ3-1从印度的Brahmaputra River盆地的AS污染地下水中孤立

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Microbe-mediated redox transformation of arsenic (As) leading to its mobilization has become a serious environmental concern in various subsurface ecosystems especially within the alluvial aquifers. However, detailed taxonomic and eco-physiological attributes of indigenous bacteria from As impacted aquifer of Brahmaputra river basin has remained under-studied. A newly isolated As-resistant and -transforming facultative anaerobic bacterium IIIJ3–1 from As-contaminated groundwater of Jorhat, Assam was characterized. Near complete 16S rRNA gene sequence affiliated the strain IIIJ3–1 to the genus Bacillus and phylogenetically placed within members of B. cereus sensu lato group with B. cereus ATCC 14579(T) as its closest relative with a low DNA-DNA relatedness (49.9%). Presence of iC17:0, iC15:0 fatty acids and menaquinone 7 corroborated its affiliation with B. cereus group, but differential hydroxy-fatty acids, C18:2 and menaquinones 5 & 6 marked its distinctiveness. High As resistance [Maximum Tolerable Concentration?=?10?mM As3+, 350?mM As5+], aerobic As3+ (5?mM) oxidation, and near complete dissimilatory reduction of As 5+ (1?mM) within 15?h of growth designated its physiological novelty. Besides O2, cells were found to reduce As5+, Fe3+, SO42?, NO3?, and Se6+ as alternate terminal electron acceptors (TEAs), sustaining its anaerobic growth. Lactate was the preferred carbon source for anaerobic growth of the bacterium with As5+ as TEA. Genes encoding As5+ respiratory reductase (arr A), As3+ oxidase (aioB), and As3+ efflux systems (ars B, acr3) were detected. All these As homeostasis genes showed their close phylogenetic lineages to Bacillus spp. Reduction in cell size following As exposure exhibited the strain’s morphological response to toxic As, while the formation of As-rich electron opaque dots as evident from SEM-EDX possibly indicated a sequestration based As resistance strategy of strain IIIJ3–1. This is the first report on molecular, taxonomic, and ecophysiological characterization of a highly As resistant, As3+ oxidizing, and dissimilatory As5+ reducing Bacillus sp. IIIJ3–1 from As contaminated sites of Brahmaputra river basin. The strain’s ability to resist and transform As along with its capability to sequester As within the cells demonstrate its potential in designing bioremediation strategies for As contaminated groundwater and other ecosystems.
机译:微生物介导的砷(AS)导致其动员的氧化还原转化已成为各种地下生态系统中的严重环境问题,特别是在冲积含水层内。然而,从Brahmaputra河流域的受影响含水层的土着细菌的详细分类和生态生态生态学属性仍然存在。 ASSAM的新孤立的孤立的可抗性和抗性和变形的厌氧菌IIJ3-1来自Jorhat的污染地下水。接近完整的16S rRNA基因序列将菌株IIIJ3-1与芽孢杆菌的菌株IIIJ3-1隶属于B.Cereus Sensu Lato组成员中,用B.Cereus ATCC 14579(t)作为其最接近的DNA-DNA相关性(49.9 %)。 IC17:0,IC15:0脂肪酸和menaquinone 7用B.培养基组织,但差异羟基 - 脂肪酸,C18:2和母牛5和6标志着其独特性。高度为电阻[最大耐受浓度吗?=?10?mm As3 +,350?mm As5 +],有氧AS3 +(5?mm)氧化,并且在15μl增长范围内接近5+(1Ωmm)的完全不含差异指定其生理性新颖性。除了O 2,还发现细胞减少As5 +,Fe3 +,SO42',NO3?,和SE6 +作为交替的末端电子受体(茶),维持其厌氧生长。乳酸盐是厌氧生长的优选碳源,用AS5 +作为茶叶。检测编码As5 +呼吸还原酶(Arr A),AS3 +氧化酶(AIOB)和AS3 + Explux系统(ARS B,ACR3)的基因。所有这些都作为稳态基因显示他们的紧密系统发育谱系向Bacillus SPP。作为曝光的细胞尺寸的降低表现出菌株对毒性的形态反应,而尽可能从SEM-EDX形成作为显神可的,因此可能表明了基于菌株IIJ3-1的抗性策略的螯合。这是第一报告的分子,分类和生态学表征高度抗性,AS3 +氧化和含量分化为5 +还原芽孢杆菌SP。 IIIJ3-1从Brahmaputra River盆地的受污染景点。菌株抵抗和变换的能力与细胞内一样孤独的能力展示其在设计污染地下水和其他生态系统的生物修复策略方面的潜力。

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