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Effect of temperature on the Bulinus globosus — Schistosoma haematobium system

机译:温度对球果双歧杆菌血吸虫系统的影响

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BackgroundGiven that increase in temperature may alter host-parasite relationships, the anticipated rise in temperature due to global warming might change transmission patterns of certain diseases. However, the extent to which this will happen is not well understood. MethodsUsing a host-parasite system involving Bulinus globosus and Schistosoma haematobium , we assessed the effect of temperature on snail fecundity, growth, survival and parasite development under laboratory conditions. ResultsOur results show that temperature may have a non-linear effect on snail fecundity and snail growth. Snails maintained at 15.5?°C and 36.0?°C did not produce egg masses while those maintained at 25.8?°C laid 344 and 105 more egg masses than snails at 31.0?°C and 21.2?°C, respectively. Attainment of patency led to a reduction in egg mass production among the snails. However, the reduction in fecundity for snails maintained at 21.2?°C occurred before snails started shedding cercariae. Parasite development was accelerated at high temperatures with snails maintained at 31.0?°C reaching patency after three weeks. Furthermore, snail growth rate was highest at 25.8?°C while it was inhibited at 15.5?°C and reduced at 31.0?°C. Increase in temperature increased snail mortality rates. Snails maintained at 36.0?°C had the shortest survival time while those maintained at 15.5?°C had the longest survival time. ConclusionsWe concluded that temperature influences fecunxdity, growth, survival and parasite development in the snail and thus dictates the time it takes the parasite to complete the life cycle. This has implications on transmission of schistosomiasis in the context of global warming.
机译:背景技术鉴于温度升高可能会改变宿主与寄生虫的关系,由于全球变暖导致的预期温度升高可能会改变某些疾病的传播方式。但是,这种情况发生的程度尚不完全清楚。方法使用包含球孢菌和血吸虫血吸虫的宿主-寄生虫系统,在实验室条件下评估温度对蜗牛繁殖力,生长,存活和寄生虫发育的影响。结果我们的结果表明温度可能对蜗牛的繁殖力和蜗牛的生长有非线性影响。维持在15.5?C和36.0?C的蜗牛不会产生卵团,而维持在25.8?C的蜗牛分别比31.0?C和21.2?C的蜗牛产卵344和105多。达到通畅状态会导致蜗牛中卵的大量生产减少。然而,在蜗牛开始脱落尾c之前,将蜗牛的繁殖力降低到21.2℃。高温促进了寄生虫的生长,蜗牛维持在31.0?C,三周后达到通畅。此外,蜗牛的生长速度在25.8℃时最高,而在15.5℃时受到抑制,在31.0℃时降低。温度升高会增加蜗牛的死亡率。维持在36.0°C的蜗牛的生存时间最短,而维持在15.5°C的蜗牛的生存时间最长。结论我们得出结论,温度影响蜗牛的繁殖力,生长,存活和寄生虫发育,从而决定了寄生虫完成生命周期所花费的时间。在全球变暖的背景下,这对血吸虫病的传播具有影响。

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