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首页> 外文期刊>Fish & Shellfish Immunology >Survivability and immune responses after challenge with Edwardsiella ictaluri in susceptible and resistant families of channel catfish, Ictalurus punctatus
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Survivability and immune responses after challenge with Edwardsiella ictaluri in susceptible and resistant families of channel catfish, Ictalurus punctatus

机译:爱德华氏菌攻击后在channel鱼易感和抗性科中的存活率和免疫应答

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摘要

Diseases in catfish farming are prevalent and costly, particularly the bacterial disease Enteric Septicemia of Catfish. Considerable research has focused on different aspects of this disease, including the biology of the causative agent, Edwardsiella ictaluri. However, no satisfactory treatment or preventive has resulted from these efforts. One solution is to increase the natural disease resistance of the fish through genetic selection. Recent research has demonstrated from these efforts. One solution is to increase the natural disease resistance of the fish through genetic selection. Recent research has demonstrated that genetic factors influence resistance to infection in mammals as well as fish. Selective breeding for disease resistance in channel catfish is ongoing, however differences in defence mechanisms among E. ictaluri challenged strains and families are only now being investigated. Antigen-specific as well as non-specific immune responses of full-sib families of channel catfish to laboratory challenge with E. ictaluri have bee investigated. Both resistant and sensitive families produce a humoral response as specific antibody, but there were no differences found in the level of specific antibody produced. The sensitive family produced a slightly higher percentage of B lymphocytes in mononuclear cell preparations from peripheral blood, while the resistant family had a higher percentage of T lymphocytes in those preparations. The most significant observation was that the resistant family produced more macrophage aggregations in the spleen and posterior kidney throughout the infection than the sensitive family. Neither family produced stress-associated amounts of cortisol.
机译:farming鱼养殖中的疾病普遍存在且代价高昂,尤其是细菌性疾病of鱼的肠道败血症。大量的研究集中在这种疾病的不同方面,包括致病因子爱德华氏菌的生物学。但是,这些努力并未产生令人满意的治疗或预防措施。一种解决方案是通过基因选择来提高鱼类的自然抗病性。最近的研究表明了这些努力。一种解决方案是通过基因选择来提高鱼类的自然抗病性。最近的研究表明,遗传因素会影响哺乳动物以及鱼类对感染的抵抗力。 channel鱼抗病性的选择性育种仍在进行中,然而,目前仅在研究大肠杆菌(E. ictaluri)挑战的菌株和科之间防御机制的差异。已研究了channel鱼全同胞家族对米色大肠杆菌的实验室攻击的抗原特异性和非特异性免疫反应。抗性家族和敏感家族均产生体液应答作为特异性抗体,但是在特异性抗体产生水平上没有发现差异。敏感家族在外周血单核细胞制剂中产生的B淋巴细胞百分比略高,而抗性家族在那些制剂中的T淋巴细胞百分比更高。最重要的观察结果是,在整个感染过程中,抗性家族比敏感家族在脾脏和后肾中产生更多的巨噬细胞聚集。两个家庭都没有产生与压力相关的皮质醇。

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