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首页> 外文期刊>Microbial Ecology: An International Journal >Temperature-Dependence of Predator-Prey Dynamics in Interactions Between the Predatory Fungus Lecophagus sp and Its Prey L-inermis Rotifers
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Temperature-Dependence of Predator-Prey Dynamics in Interactions Between the Predatory Fungus Lecophagus sp and Its Prey L-inermis Rotifers

机译:捕食者 - 捕食性动态在捕食性真菌鳞茎SP的相互作用中的温度依赖性及其猎物L-肠道转子

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摘要

Temperature is considered an important factor that influences the bottom-up and top-down control in water habitats. We examined the influence of temperature on specific predatory-prey dynamics in the following two-level trophic system: the predatory fungus Lecophagus sp. and its prey Lecane inermis rotifers, both of which originated from activated sludge obtained from a wastewater treatment plant (WWTP). The experiments investigating the ability of conidia to trap rotifers and the growth of fungal mycelium were performed in a temperature range that is similar to that in WWTPs in temperate climate. At 20 A degrees C, 80% of the conidia trapped the prey during the first 24 h, whereas at 8 A degrees C, no conidium was successful. The mycelium growth rate was the highest at 20 A degrees C (r = 1.44) during the first 48 h but decreased during the following 24 h (r = 0.98), suggesting the quickest use of resources. At a medium temperature of 15 A degrees C, the tendency was opposite, and the r value was lower during the first 48 h. At 8 A degrees C, the growth rate was very low and remained at the same level even though numerous active rotifers were potentially available for the fungus. The temperature also influences the production of new conidia; on the 7th day, new conidia were observed in 96% of the wells at 20 A degrees C, but no new conidia were observed at 8A degrees C. These results show that the prey (rotifers)-predator (Lecophagus) dynamics in WWTPs is temperature-dependent, and a temperature of 8 A degrees C is a strongly limiting factor for the fungus. Moderate temperatures ensure the most stable coexistence of the fungus and its prey, whereas the highest temperature can promote the prevalence of the predator.
机译:温度被认为是影响水栖息地的自下而上和自上而下控制的重要因素。我们在以下两级营养系统中检测了温度对特定掠夺性动态的影响:捕食性真菌lecophagus sp。其初中甲烷肠道转烤器,两者都源自从废水处理厂(WWTP)获得的活性污泥。研究分枝瘤捕获转炉和真菌菌丝体生长的实验在温度范围内进行温度范围,温度气候温度等温度范围。在20℃下,80%的分类在前24小时期间捕获了猎物,而在8℃下,没有刚刚成功。在前48小时期间,菌丝体生长速率最高,但在前48小时期间,在下面的24小时(R = 0.98)期间减少,表明资源最快。在15℃的中温度下,趋势相反,在前48h期间,R值较低。在8℃下,即使无菌的真菌可能可用,生长速率非常低,并且仍然保持在相同的水平。该温度也影响新的Conidia的生产;在第7天,在20℃的井中的96%的井中观察到新的分类,但在8A℃下没有观察到新的分类。这些结果表明,WWTPS中的猎物(Repopers) - 前进者(lecophagus)动态是温度依赖性,8℃的温度是真菌的强烈限制因素。中等温度确保真菌和猎物最稳定的共存,而最高温度可以促进捕食者的患病率。

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