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Microbial metabolites: Structure and function of bacterial siderophores from Pseudomonas species, and, Identification of secondary metabolites excreted by brown rot fungi Gloeophyllum species.

机译:微生物代谢产物:假单胞菌属细菌铁载体的结构和功能,以及褐腐真菌Gloeophyllum种所分泌的次生代谢产物的鉴定。

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摘要

Siderophores are high-affinity iron chelators produced by microorganisms for iron uptake. Siderophores can also interact with other metals and participate in metal homeostasis. Pyridine-2,6-bis(thiocarboxylic acid) (pdtc) synthesized by Pseudomonas stutzeri KC as a secondary siderophore is a uniquely multi-potential metabolite, having high affinity for several metals and when complexed with copper, the ability to degrade carbon tetrachloride. These attributes give pdtc a potential for use in metal and organic contaminant remediation.; The primary siderophores of P. stutzeri KC were characterized and a specific siderophore outer membrane receptor identified. Siderophores of fourteen other P. stutzeri and P. balearica strains were also identified to clarify strain KC taxonomy. KC and other related strains were found to produce proferrioxamines, while three remaining strains produced amonabactins, not previously observed in Pseudomonas. A putative ferrioxamine outer membrane receptor gene foxA was identified in strain KC. Genes homologous to foxA were detected in all strains studied. We concluded that P. stutzeri could be divided into two distinct siderotypes; strain KC belongs to the proferrioxamine-producing P. stutzeri.; Investigations of pdtc interactions with toxic metals and metalloids allowed for the elucidation of new pdtc functions in bacterial environment conditioning. Pdtc was shown to reduce selenite and tellurite, forming insoluble selenides and tellurides releasing elemental selenium and tellurium upon hydrolysis. Pdtc was found to reduce chromium(VI) to Cr(III) and form complexes with Cr(III) that hydrolyze, releasing insoluble Cr(III) sulfides. A model of strain KC interactions with chromium was proposed and the chromate transporter chrA described. Pdtc formed poorly soluble complexes with mercury, cadmium, lead, and arsenic(III) that hydrolyzed releasing respective metal sulfides. Strain KC was more tolerant of those metals than the pdtc-negative mutant strain CTN1.; Cu:pdtc is the only metal:pdtc complex that will degrade carbon tetrachloride. Once formed, Cu:pdtc's CCl4 degradation activity is not inhibited by other metals meaning that the chemically synthesized Cu:pdtc may be useful for remediation of CCl4 in mixed metal-organic waste.; Brown-rot fungi excrete various metabolites used in free radical-mediated lignocellulose decomposition. Isocoumarins and phenolic derivatives produced by Gloeophyllum spp. were identified. Our findings contribute to the understanding of wood degradation by brown-rot fungi.
机译:铁载体是由微生物产生的用于铁吸收的高亲和力铁螯合剂。铁载体还可以与其他金属相互作用并参与金属稳态。由斯氏假单胞菌(Sseudomonas stutzeri KC)合成的吡啶2,6-双(硫代羧酸)(pdtc)作为次生铁载体是一种独特的多能代谢产物,对几种金属具有高亲和力,当与铜络合时,具有降解四氯化碳的能力。这些特性使pdtc有望用于金属和有机污染物的修复。鉴定了斯图氏假单胞菌KC的主要铁载体,并鉴定了特定的铁载体外膜受体。还确定了其他14个斯图氏假单胞菌和巴利阿里假单胞菌菌株的铁载体,以阐明菌株KC的分类学。发现KC和其他相关菌株可产生原铁胺,而其余三个菌株可产生amonabactins,以前在假单胞菌中未观察到。在菌株KC中鉴定出推定的铁氧嘧啶外膜受体基因foxA。在所有研究菌株中均检测到与foxA同源的基因。我们得出的结论是,斯图氏假单胞菌可分为两种不同的铁型体。菌株KC属于产生铁前氧胺的斯氏疟原虫。 pdtc与有毒金属和准金属相互作用的研究可以阐明细菌环境调节中新的pdtc功能。已显示Pdtc还原亚硒酸盐和亚碲酸盐,形成不溶的硒化物和碲化物,水解后释放出元素硒和碲。发现Pdtc可以将六价铬还原为三价铬,并与三价铬形成络合物,后者水解,释放出不溶的三价铬硫化物。提出了菌株KC与铬相互作用的模型,并描述了铬酸盐转运蛋白chrA。 Pdtc与汞,镉,铅和砷(III)形成难溶的络合物,并水解释放相应的金属硫化物。与pdtc阴性突变株CTN1相比,KC株对这些金属的耐受性更高。 Cu:pdtc是唯一会降解四氯化碳的金属:pdtc配合物。一旦形成,Cu:pdtc的CCl4降解活性就不会受到其他金属的抑制,这意味着化学合成的Cu:pdtc可能对修复金属有机废物中的CCl4有用。褐腐真菌会排泄用于自由基介导的木质纤维素分解的各种代谢物。 Gloeophyllum spp生产的异香豆素和酚类衍生物。被确定。我们的发现有助于理解褐腐真菌对木材的降解作用。

著录项

  • 作者

    Zawadzka, Anna M.;

  • 作者单位

    University of Idaho.;

  • 授予单位 University of Idaho.;
  • 学科 Biology Microbiology.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 174 p.
  • 总页数 174
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 微生物学;
  • 关键词

  • 入库时间 2022-08-17 11:40:40

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