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首页> 外文期刊>Aquatic Microbial Ecology >Effects of prey abundance and light intensity on nutrition of a mixotrophic flagellate and its competitive relationship with an obligate heterotroph
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Effects of prey abundance and light intensity on nutrition of a mixotrophic flagellate and its competitive relationship with an obligate heterotroph

机译:猎物丰度和光照强度对混合营养鞭毛营养的影响及其与专性异养营养菌的竞争关系

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ABSTRACT: The mixotroph Poterioochromonas malhamensis was grown in batch and semi-continuous cultures in order to examine the dependence of phagotrophy versus phototrophy at bacterial densities similar to those found in oligo- and mesotrophic lakes in combination with differing light regimes. In addition, the growth rates and biomass accumulation of the mixotroph were compared to those of the heterotroph Spumella elongata grown under similar conditions. In P. malhamensis, primary production rates and cell-specific chlorophyll a concentrations were significantly higher when grown at low bacterial densities, and the carbon cell-1 gained by photosynthesis corresponded to 79% of the carbon cell-1 gained by bacterial ingestion. Furthermore, due to a longer exponential growth phase, cell densities and biomass of P. malhamensis were significantly higher when the mixotroph was cultured in high light than in darkness. As a result, the cumulative biomass of the mixotroph was significantly higher in the light treatments than the biomass of the heterotroph at similar bacterial densities. These results suggest that photosynthesis may contribute more to the nutrition of P. malhamensis in lakes with low bacterial abundances than previously suggested, and that the mixotroph1s capacity for photosynthesis enables it to dominate in terms of biomass over the heterotroph.
机译:摘要:混合营养菌 Poterioochromonas malhamensis 分批和半连续培养,目的是研究吞噬营养与光养营养对细菌密度的依赖性,类似于在低营养和中营养湖泊中发现的细菌密度与不同光的结合。政权。另外,将混合营养菌的生长速率和生物量积累与在相似条件下生长的异养营养菌 Spongella elongata 进行了比较。在 P。低细菌密度下生长时,穆罕默德氏菌,初级生产力和细胞特异性叶绿素 a 浓度均显着较高,并且光合作用获得的碳细胞 -1 对应细菌摄入获得的碳细胞 -1 的79%。此外,由于更长的指数生长期,i P的细胞密度和生物量。混合营养菌在高光下培养比在黑暗中高得多。结果,在相似的细菌密度下,混合营养菌的累积生物量在光照下明显高于异养生物的生物量。这些结果表明光合作用可能对 P的营养贡献更大。细菌丰度比以前建议的低的湖泊中的马尔汉姆菌(malhamensis),并且混合营养生物的光合作用能力使其能够在生物多样性上占优势。

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