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EPS degradation by microorganisms from hypersaline environment microbial mats.

机译:高盐环境微生物垫中微生物对EPS的降解作用。

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摘要

Microbial mats are complex organo - sedimentary structures and their self-sustainability, tight element cycling and relatively simple microbial composition are unique characteristics. Complex extracellular polymeric substances (EPS) are produced by the microbial communities that compose this ecosystem. Given their known metabolic capabilities, this research focused on the possibility of fungi being the primary decomposers of those secretions. Samples collected from a developing and a more mature mat were cultured in xanthan gum media (model EPS) and different treatments were applied. Degradation by monocultures of bacteria and, fungi and combined cultures of these were monitored with the Phenol-sulfuric assay. Change in community structure was assessed by molecular techniques and EPS-degrading organisms were isolated from the enrichment cultures. Results from these analysis showed that the bacterial groups are the primary degraders of the EPS. TRFLP community analysis reinforced those results by displaying that fungal communities became scarce in EPS enriched cultures. Six fungal and 4 bacterial isolates were isolated from the enriched cultures belonging to groups related to microbial mats and other hypersaline environments.
机译:微生物垫是复杂的有机沉积结构,它们的自我可持续性,紧密的元素循环和相对简单的微生物组成是其独特的特征。复杂的细胞外聚合物(EPS)是由组成该生态系统的微生物群落产生的。鉴于它们已知的代谢能力,这项研究集中于真菌是这些分泌物的主要分解剂的可能性。从发展中的垫子和更成熟的垫子收集的样品在黄原胶培养基(EPS型)中培养,并采用不同的处理方法。用酚-硫酸法监测细菌和真菌的单培养降解以及它们的组合培养。通过分子技术评估群落结构的变化,并从浓缩培养物中分离出降解EPS的生物。这些分析的结果表明,细菌基团是EPS的主要降解物。 TRFLP社区分析通过显示真菌社区在富含EPS的文化中变得稀缺来加强了这些结果。从富集的培养物中分离出6种真菌和4种细菌分离株,这些培养物与微生物垫和其他高盐环境有关。

著录项

  • 作者

    Duval, Lisabeth Perez.;

  • 作者单位

    Universidad del Turabo (Puerto Rico).;

  • 授予单位 Universidad del Turabo (Puerto Rico).;
  • 学科 Environmental Sciences.
  • 学位 M.S.
  • 年度 2010
  • 页码 103 p.
  • 总页数 103
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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