首页> 美国卫生研究院文献>International Journal for Parasitology: Parasites and Wildlife >Description and ecophysiology of a new species of Syndesmis Silliman 1881 (Rhabdocoela: Umagillidae) from the sea urchin Evechinus chloroticus (Valenciennes 1846) Mortensen 1943 in New Zealand
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Description and ecophysiology of a new species of Syndesmis Silliman 1881 (Rhabdocoela: Umagillidae) from the sea urchin Evechinus chloroticus (Valenciennes 1846) Mortensen 1943 in New Zealand

机译:海胆Evechinus chloroticus(Valenciennes1846)Mortensen1943年在新西兰的一种新物种Syndesmis Silliman1881年(Rhabdocoela:Umagillidae)的描述和生态生理学

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摘要

A new rhabdocoel of the genus Syndesmis Silliman, 1881 (Umagillidae) is described from the intestine of the New Zealand sea urchin Evechinus chloroticus (Valenciennes, 1846) Mortensen, 1943a. This new species, Syndesmis kurakaikina n. sp., is morphologically distinct and can easily be recognised by its very long (±1 mm) stylet and its bright-red colour. In addition to providing a formal description, we present some observations on reproduction and life history of this new species. Fecundity is comparable to that of other umagillids and the rate of egg production and development increases with temperature. Hatching in this species is induced by intestinal fluids of its host. Relevant to global warming, we assessed the effect of temperature on survival, fecundity, and development. The tests indicate that Syndesmis kurakaikina n. sp. is tolerant of a wide range of temperatures (11–25 °C) and that its temperature optimum lies between 18.0 and 21.5 °C. Egg viability is, however, significantly compromised at the higher end of this temperature range, with expelled egg capsules often being deformed and showing increasingly lower rates of hatching. Given this, a rise in global temperature might increase the risk of Syndesmis kurakaikina n. sp. infecting new hosts and would possibly facilitate the spread of these endosymbionts.
机译:从新西兰海胆Evechinus chloroticus(Valenciennes,1846)Mortensen,1943a的肠中描述了一种新的Sydesmis Silliman,1881(Umagillidae)的横纹肌。这个新物种,Syndesmis kurakaikina n。 sp。,在形态上截然不同,并且可以通过其很长的(±1mm)探针和亮红色轻松识别。除了提供正式的描述外,我们还介绍了有关该新物种繁殖和生活史的一些观察结果。卵子的繁殖力与其他尿片相似,并且卵的产生和发育的速度随温度的升高而增加。该物种的孵化是由其宿主的肠液引起的。与全球变暖相关,我们评估了温度对生存,繁殖力和发育的影响。测试表明,Syndesmis kurakaikina n。 sp。可耐受多种温度(11–25 C),并且其最佳温度介于18.0至21.5 C之间。但是,在此温度范围的较高端,鸡蛋的生存能力受到很大损害,被排出的卵囊经常变形并且孵化率越来越低。鉴于此,全球温度升高可能会增加Syndesmis kurakaikina n的风险。 sp。感染新宿主,可能会促进这些共生菌的扩散。

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