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鸡异刺线虫产卵的日变化。

Diurnal variation in egg excretion by Heterakis gallinarum.

机构信息

Institute of Nutritional Physiology 'Oskar Kellner', Leibniz Institute for Farm Animal Biology,18196,Dummerstorf,Germany.

Bioinformatics and Biomathematics Unit,Institute of Genetics and Biometry, Leibniz Institute for Farm Animal Biology,18196 Dummerstorf,Germany.

出版信息

Parasitology. 2019 Feb;146(2):206-212. doi: 10.1017/S0031182018001075. Epub 2018 Jul 6.

Abstract

Periodicity in nematode egg excretion may be of evolutionary origin as it can favour dispersal of the eggs in the environment. We investigated whether egg excretion by Heterakis gallinarum shows a repeatable pattern of periodicity. The faecal egg concentration and total number of eggs excreted within 4-h intervals were significantly affected by the sampling time within 1 day, but remained unaffected by the sampling day or interaction effects. By contrast, the total number of eggs excreted within 24 h did not differ among the 4 days of the study, collectively indicating repeatable egg excretion patterns. Both host feces and parasite egg excretion increased from night to late afternoon, followed by a decrease in the evening, resulting in higher egg excretion during daytime than the dark period. Feces excretion and worm fecundity showed overlapping diurnal rhythms with similarly timed phases, suggesting the existence of synchronicity between the host feces and nematode egg excretion patterns. We conclude that egg excretion by H. gallinarum is synchronized with host feces excretion and is higher during the daytime than during the dark period. This overlaps with the maximum activity of the day-active host and allows a maximal dispersal of the eggs in the environment.

摘要

线虫卵排出的周期性可能具有进化起源,因为它有利于卵在环境中的传播。我们研究了鸡异刺线虫的卵排出是否表现出可重复的周期性模式。在 1 天内的不同采样时间内,粪便中的卵浓度和 4 小时间隔内排出的卵总数显著受影响,但不受采样日或相互作用的影响。相比之下,在研究的 4 天内,24 小时内排出的卵总数没有差异,这表明卵排出具有可重复的模式。宿主粪便和寄生虫卵的排出均从夜间到下午晚些时候增加,然后在傍晚减少,导致白天的卵排出量高于夜间。粪便排泄和蠕虫产卵具有重叠的昼夜节律,相位相似,这表明宿主粪便和线虫卵排出模式之间存在同步性。我们得出结论,鸡异刺线虫的卵排出与宿主粪便排出同步,白天的排出量高于夜间。这与白天活动的宿主的最大活动时间重叠,使卵在环境中最大程度地传播。

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