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Effects of Substrate Biodegradability on the Mass and Activity of the Associated Estuarine Microbiota

机译:底物生物降解性对相关河口微生物群质量和活性的影响

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Multiple biochemical assays of microbial mass and activities were applied to the estuarine detrital microbiota colonizing morphologically similar polyvinyl chloride needles and needles from slash pine (Pinus elliottii). Biodegradable pine needles consistently showed 2- to 10-fold higher values of extractable adenosine 5′-triphosphate, rates of oxygen utilization, activities of alkaline phosphatase and phosphodiesterase, and the mucopeptide cell wall component muramic acid than did the polyvinyl chloride needles, during a 14-week incubation in a semitropical estuary. The higher activities by the microbiota of the biodegradable substrate correlated with estimates of the microbial density from scanning electron microscopy. The microbial community associated with the nondegradable substrate showed minimal activity of β-d-galactosidase, β-d-glucosidase, and α-d-mannosidase in contrast to the biota of the degradable substrate, which showed 10- to 100-fold higher activities of these glycoesterases. These enzymes logically could be involved in catabolism of the carbohydrate polymers of the detritus. Assuming equivalent rates of predation, a surface that is also a utilizable substrate supports a three- to fivefold more active microbial population.
机译:将多种微生物质量和活性的生化测定法应用于河口碎屑微生物群,在形态相似的聚氯乙烯针头和斜线松(Pinus elliottii)针头上定植。可生物降解的松针始终显示出可提取的5'-三磷酸腺苷值,氧利用率,碱性磷酸酶和磷酸二酯酶的活性以及粘肽细胞壁成分山酸比聚氯乙烯针高2至10倍。在亚热带河口孵化14周。可生物降解的底物的微生物群较高的活性与通过扫描电子显微镜对微生物密度的估计有关。与不可降解底物相关的微生物群落显示出最小的β-d-半乳糖苷酶,β-d-葡萄糖苷酶和α-d-甘露糖苷酶活性,而可降解底物的生物区系则具有10至100倍的高活性这些糖酯酶。这些酶在逻辑上可能与碎屑的碳水化合物聚合物的分解代谢有关。假设捕食的速率相等,则表面也是可利用的底物,其活性微生物种群将增加三到五倍。

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