Effect of trematode infection on cardiac activity of marine gastropod Littorina littorea in situ and under laboratory conditions.

IF 1.1 4区 农林科学 Q3 FISHERIES Diseases of aquatic organisms Pub Date : 2024-10-10 DOI:10.3354/dao03819
Igor Bakhmet, Kirill E Nikolaev, Alexei O Smurov, Ivan Levakin, Dmitry Ekimov
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Abstract

Physiological mechanisms underlying relationships between the trematode parthenitae and their molluscan hosts are poorly understood. In this study, we estimated the cardiac function of gastropods Littorina littorea L. infected with Himasthla elongata and Cryptocotyle lingua under laboratory conditions and in situ. The heart rate (HR) of the infected periwinkles was significantly lower than in the uninfected ones. HR of uninfected periwinkles in the natural environment followed a clear tidal pattern, with high values at high tide and low values at low tide. However, HR in most of the infected molluscs did not follow this rhythm. The decrease in HR was more pronounced in the periwinkles infected with C. lingua than with H. elongata. Thus, infection with C. lingua had a greater effect on the physiology and metabolic rate of periwinkles than infection with H. elongata.

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在原地和实验室条件下,吸虫感染对海洋腹足类 Littorina littorea 心脏活动的影响。
人们对震旦虫与软体动物宿主之间关系的生理机制知之甚少。在这项研究中,我们在实验室和原位条件下评估了腹足纲动物 Littorina littorea L. 感染 Himasthla elongata 和 Cryptocotyle lingua 的心脏功能。受到感染的珍珠贝的心率(HR)明显低于未受到感染的珍珠贝。在自然环境中,未感染的藻类的心率有明显的潮汐变化规律,涨潮时心率高,落潮时心率低。然而,大多数受感染软体动物的心率并不遵循这一规律。感染了 C. lingua 的珍珠贝比感染了 H. elongata 的珍珠贝的 HR 下降得更明显。因此,感染 C. lingua 比感染 H. elongata 对珍珠贝的生理机能和新陈代谢率的影响更大。
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来源期刊
Diseases of aquatic organisms
Diseases of aquatic organisms 农林科学-兽医学
CiteScore
3.10
自引率
0.00%
发文量
53
审稿时长
8-16 weeks
期刊介绍: DAO publishes Research Articles, Reviews, and Notes, as well as Comments/Reply Comments (for details see DAO 48:161), Theme Sections and Opinion Pieces. For details consult the Guidelines for Authors. Papers may cover all forms of life - animals, plants and microorganisms - in marine, limnetic and brackish habitats. DAO''s scope includes any research focusing on diseases in aquatic organisms, specifically: -Diseases caused by coexisting organisms, e.g. viruses, bacteria, fungi, protistans, metazoans; characterization of pathogens -Diseases caused by abiotic factors (critical intensities of environmental properties, including pollution)- Diseases due to internal circumstances (innate, idiopathic, genetic)- Diseases due to proliferative disorders (neoplasms)- Disease diagnosis, treatment and prevention- Molecular aspects of diseases- Nutritional disorders- Stress and physical injuries- Epidemiology/epizootiology- Parasitology- Toxicology- Diseases of aquatic organisms affecting human health and well-being (with the focus on the aquatic organism)- Diseases as indicators of humanity''s detrimental impact on nature- Genomics, proteomics and metabolomics of disease- Immunology and disease prevention- Animal welfare- Zoonosis
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