首页> 外文期刊>Polish journal of ecology >THE IMPACT OF UV MEDIATED HYDROGEN PEROXIDE ON CULTURABLE BACTERIA IN THE SURFACE MICROLAYER OF EUTROPHIC LAKE
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THE IMPACT OF UV MEDIATED HYDROGEN PEROXIDE ON CULTURABLE BACTERIA IN THE SURFACE MICROLAYER OF EUTROPHIC LAKE

机译:紫外线介导的过氧化氢对富营养湖表面微层中可培养细菌的影响

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Hydrogen peroxide (H_ 2O_2 ) formation in surface waters is initiated by the absorption of sunlight by dissolved organic matter (DOM). The fraction of the DOM pool that interacts with sunlight, referred to as chromophoric dissolved organic matter, impacts the optical properties of surface waters. Second source of H_2O_2 is wet and dry deposition of photogenerated substance in the atmosphere and biological production. The study examined the concentration of hydrogen peroxide in water from the surface microlayer (SM) (<100 μm) and subsurface water (SSW) (25 cm) in the typical eutrophic (TOC 5-15 mg dm~(-;,3 c hlworophaylt 5e-)26r μg dm~(- transparency 0.6-1.0 m) lake as well as the impact of this compound on occurrence and survivorship of catalase-positive and catalase-negative bacteria isolated and cultured on the TSA medium (Difco). The experimental H_2O_2 concentrations ranged between 500-5000 nM. The concentration of H_i22n analOyzed wate_r samples clearly increased in day-time hours and was different in May, July and October. The highest natural concentration of H_2O_2 (700 nM) was observed in SM water in summer in afternoon hours. During that period, 100% of bacterial populations found in SM water produced catalase. The experiments confirmed that environmental concentrations of H_cO2ause_d no considerable decrease in survivorship of culturable bacteria, while concentrations exceeding 1000 nM were lethal for the majority of catalasenegative bacteria, but not for catalase-positive bacteria.
机译:地表水中过氧化氢(H_2O_2)的形成是由溶解有机物(DOM)吸收太阳光引起的。 DOM池中与阳光相互作用的部分,称为发色溶解的有机物,会影响地表水的光学特性。 H_2O_2的第二个来源是大气中光生物质的湿法和干法沉积以及生物生产。该研究检查了典型富营养化(TOC 5-15 mg dm〜(-;, 3 c)下表面微层(SM)(<100μm)和地下水(SSW)(25 cm)中水中的过氧化氢浓度) hlworophaylt 5e-)26rμgdm〜(-透明0.6-1.0 m)湖,以及该化合物对在TSA培养基(Difco)上分离和培养的过氧化氢酶阳性和过氧化氢酶阴性细菌的发生和存活的影响。实验H_2O_2的浓度在500-5000 nM之间,H_i22n分析的wate_r样品的浓度在白天明显升高,5月,7月和10月有所不同,在SM水中观察到最高的自然H_2O_2(700 nM)浓度。在此期间,SM水中发现的细菌种群中有100%产生过氧化氢酶,实验证实H_cO2ause_d的环境浓度对可培养细菌的存活率没有明显降低,而浓度超过1000 nM时,对大多数过氧化氢酶阴性细菌具有致命性,但对过氧化氢酶阳性细菌则没有致死性。

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