Of mudsnails, terrapins, and flukes: Use of trematodes as a field-based project in parasitology research

IF 1.3 4区 生物学 Q3 MARINE & FRESHWATER BIOLOGY Invertebrate Biology Pub Date : 2021-03-12 DOI:10.1111/ivb.12326
Adriana Eugene, Russell L. Burke, Jason D. Williams
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引用次数: 1

Abstract

We present an exercise for counting trematode cysts on mudsnails that can be implemented as a field-based project in course work by students or by volunteers. The exercise involves the digenetic trematode Pleurogonius malaclemys, which infects diamondback terrapins (Malaclemys terrapin) as its definitive host, and eastern mudsnails (Tritia obsoleta) as its intermediate host. The trematode forms macroscopic metacercarial cysts on the shells and opercula of the mudsnails, and the life cycle is completed when terrapins ingest the intermediate hosts with cysts. Previous research has suggested that quantifying cysts on mudsnails can be a relatively simple method to estimate terrapin population sizes where terrapins co-occur with mudsnails. Three non-professional scientist groups (including students and volunteers) were tested in their estimates of prevalence and intensity data compared to verified cyst counts. Prevalence data were relatively accurate (~76–78%) and reliable (68–89%) across the groups. The intensity of cysts (on shells and opercula of mudsnails) were mostly within 12% of the verified counts (total mean intensity of 1.81–2.97 cysts/parasitized mudsnail) but varied significantly in two cases due to false positives (likely due to sand grains or debris scored as cysts) or negatives (likely due to missed cysts behind the operculum). The exercise can be completed as a lab or series of labs in courses, and data from such projects could be used in terrapin conservation efforts, particularly in helping scientists determine where terrapins occur. We discuss modification of the exercise for other trematode species in regions around the world and hope this expands recognition by the public of the important role of parasites in ecosystems.

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关于泥岩、土鳖和吸虫:利用吸虫作为寄生虫学研究的实地项目
我们提出一种计算泥螺吸虫囊肿的方法,可以在学生或志愿者的课程作业中作为一个基于实地的项目来实施。这项试验涉及到遗传吸虫,它感染了菱形龟(malaclemys terrapin)作为它的最终宿主,东部泥螺(Tritia obsoleta)作为它的中间宿主。吸虫在泥螺的壳和包膜上形成宏观的囊蚴囊肿,当泥螺吞食有囊蚴的中间寄主时,生命周期结束。以前的研究表明,量化泥螺上的囊肿可以是一种相对简单的方法来估计水龟和泥螺共生的水龟种群规模。三个非专业的科学家小组(包括学生和志愿者)对他们的患病率和强度数据的估计进行了测试,并与证实的囊肿计数进行了比较。各组间患病率数据相对准确(~76 - 78%)和可靠(68 - 89%)。囊(在泥螺的壳和包皮上)的强度大多在验证计数的12%以内(总平均强度为1.81 - 2.97个囊/寄生泥螺),但在两例中,由于假阳性(可能是由于沙粒或碎屑被标记为囊肿)或阴性(可能是由于包皮后面遗漏了囊肿),差异显着。这个实验可以作为一个实验室或一系列课程的实验室来完成,这些项目的数据可以用于保护水龟的工作,特别是帮助科学家确定水龟的活动地点。我们讨论了对世界各地其他吸虫物种的练习进行修改,并希望这能扩大公众对寄生虫在生态系统中重要作用的认识。
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来源期刊
Invertebrate Biology
Invertebrate Biology 生物-动物学
CiteScore
2.20
自引率
8.30%
发文量
28
审稿时长
>12 weeks
期刊介绍: Invertebrate Biology presents fundamental advances in our understanding of the structure, function, ecology, and evolution of the invertebrates, which represent the vast majority of animal diversity. Though ultimately organismal in focus, the journal publishes manuscripts addressing phenomena at all levels of biological organization. Invertebrate Biology welcomes manuscripts addressing the biology of invertebrates from diverse perspectives, including those of: • genetics, cell, and molecular biology • morphology and biomechanics • reproduction and development • physiology and behavior • ecology • evolution and phylogenetics
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