Suppr超能文献

椎实螺(Physa gyrina)体内吸虫群落结构

Trematode community structure in the pulmonate snail Physa gyrina.

作者信息

Snyder S D, Esch G W

机构信息

Department of Biology, Wake Forest University, Winston-Salem, North Carolina 27109.

出版信息

J Parasitol. 1993 Apr;79(2):205-15.

PMID:8459331
Abstract

Trematode community structure was examined in the pulmonate snail Physa gyrina over a 12-mo period. A total of 1,181 snails was collected from Charlie's Pond, North Carolina, and was found to be parasitized by 6 trematode species. Infracommunities were relatively species rich when compared to previous studies, with 18.4% of infected snails having multi-species infections. Halipegus eccentricus was found in 88.4% of multiple infections, usually with 1 of 2 other autogenic, egg-transmitted species (Haematoloechus complexus and Glypthelmins quieta). Neither negative interspecific interactions nor a dominance hierarchy were apparent among the trematodes. These factors, along with high snail vagility and the temporal heterogeneity of infective stages in the environment, are suggested to have contributed to the high number of multiple infections. Halipegus eccentricus was also the most prevalent parasite throughout the study, occurring in nearly 50% of all snails during May, June, and July. Apparent parasite-induced host mortality caused by this trematode species contributed to increasing species diversity in larger snails. The component community was also affected by the continuous recruitment of new snails into the host population and by changes in the number of infective stages present over time.

摘要

在为期12个月的时间里,对肺螺亚纲的扭旋萝卜螺体内的吸虫群落结构进行了研究。从北卡罗来纳州的查理池塘总共收集了1181只蜗牛,发现它们被6种吸虫寄生。与之前的研究相比,体内群落的物种相对丰富,18.4%的受感染蜗牛有多种物种感染。在88.4%的多重感染中发现了偏心哈氏吸虫,通常与另外两种自体感染、卵传播的物种(复杂血居吸虫和安静弯口吸虫)中的一种同时出现。吸虫之间既没有明显的种间负相互作用,也没有优势等级。这些因素,连同蜗牛的高移动性和环境中感染阶段的时间异质性,被认为是导致多重感染数量众多的原因。偏心哈氏吸虫也是整个研究中最普遍的寄生虫,在5月、6月和7月,近50%的蜗牛体内都有这种寄生虫。这种吸虫物种明显导致的宿主死亡导致了较大蜗牛物种多样性的增加。组成群落也受到新蜗牛不断进入宿主种群以及随着时间推移感染阶段数量变化的影响。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验