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豆蟹(Pinnotheres vicajii)对双壳贝类马氏珠母贝(Paphia malabarica)免疫功能的影响。

Effect of pea crab Pinnotheres vicajii (Chhapgar, 1957) on immunocompetence of bivalve Paphia malabarica (Chemnitz, 1782).

机构信息

Academy of Scientific and Innovative Research (AcSIR), CSIR- National Institute of Oceanography, Dona Paula, Goa 403 004, India.

Academy of Scientific and Innovative Research (AcSIR), CSIR- National Institute of Oceanography, Dona Paula, Goa 403 004, India.

出版信息

Fish Shellfish Immunol. 2017 Nov;70:319-326. doi: 10.1016/j.fsi.2017.08.044. Epub 2017 Sep 6.

Abstract

The endosymbiont-host relationship between a pea crab and its bivalve host has been studied previously using bivalve's multi-physiological parameters. The present study is first of its kind that uses hemocyte's immune functionality to evaluate the symbiotic relationship between bivalve Paphia malabarica and its symbiont crab, Pinnotheres vicajii. The sampling was carried out at two stations (differed in nutrient concentration, productivity, and bacterial abundance) located along the southwest coast of India. The results showed lower immunocompetence in the case of bivalves infested with pea crabs. The lowering of hemocyte population was the most prominent and perhaps the initial reaction in response to focal inflammation or wound inflicted by the pea crabs. A significant lowering of phagocytosis, lysozyme, and esterase activity was also observed, indicating the detrimental impact of crab infestation. Interestingly, no significant correlation was found between parasitism and condition index despite the lower immunocompetence, validating the effectiveness of using hematological parameters in comparison to other life-history traits. This indicates that the immune parameters being directly related to the organism's metabolic state can elucidate the early effect of stressors, therefore, proving to be a better proxy for understanding a host-pathogen relationship. Disparity found in bivalve's immunocompetence between the sampling sites could be linked to either variation in environmental parameters, the size of the symbiont or the infection level. Our preliminary results provide a direction towards examining immunodepression in parasitized bivalves by considering ex-situ controlled parasitism induction along with varying environmental conditions. In view of this, efforts must be directed towards minimizing pea crab's outbreaks, especially in cultivated shellfish farms. Future studies should elucidate molecular mechanisms involved in the immunocompetence of P. malabarica, hosting the parasitic pea crabs.

摘要

先前,人们已经通过双壳类动物的多种生理参数研究了豆蟹与其双壳类宿主之间的共生关系。本研究首次使用血细胞的免疫功能来评估双壳类软体动物马氏珠母贝与其共生蟹豆蟹之间的共生关系。该研究在印度西南海岸的两个站位(营养浓度、生产力和细菌丰度不同)进行采样。结果表明,感染豆蟹的双壳类动物的免疫能力较低。血细胞数量的减少最为明显,这可能是豆蟹造成的局部炎症或创伤的最初反应。吞噬作用、溶菌酶和酯酶活性的显著降低也表明了蟹类寄生的有害影响。有趣的是,尽管免疫能力较低,但寄生与状况指数之间没有发现显著相关性,这验证了使用血液学参数与其他生活史特征相比的有效性。这表明,与生物体代谢状态直接相关的免疫参数可以阐明应激源的早期影响,因此,证明是理解宿主-病原体关系的更好替代方法。在采样地点之间,双壳类动物的免疫能力存在差异,这可能与环境参数的变化、共生体的大小或感染水平有关。我们的初步结果为通过考虑体外控制寄生诱导以及不同的环境条件来检查寄生双壳类动物的免疫抑制提供了一个方向。在这方面,必须努力减少豆蟹的爆发,特别是在养殖贝类养殖场。未来的研究应阐明马氏珠母贝(寄生豆蟹的宿主)免疫能力涉及的分子机制。

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