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The development of diagnostic techniques to assess anaemia in aquaculture reared Atlantic Salmon (Salmo Salar).

The development of diagnostic techniques to assess anaemia in aquaculture reared Atlantic Salmon (Salmo Salar).
评估水产养殖大西洋鲑鱼(Salmo Salar)贫血的诊断技术的发展。
批准号:
BB/S004467/1
负责人:
Brian Quinn
金额:
$22.73万
依托单位国家:
英国
项目类别:
Research Grant
财政年份:
2019
资助国家:
英国
项目状态:
已结题
起止时间:
2019 至 --

项目摘要

项目成果

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中文摘要
翻译
在过去的12个月里,在苏格兰的鲑鱼养殖业中,贫血已经成为对鱼类健康的重大威胁。当缺乏红细胞时,就会发生贫血,降低血液的携氧能力,并对鱼类健康和产量产生负面影响。通过最近与水产养殖业伙伴举行的SAIC项目会议,人们强调,该行业在确定发生的贫血类型、确定其来源并随后制定预防战略方面的实际方法有限。苏格兰水产养殖业正在寻求建立血液学监测计划,以表征和量化贫血的影响,但目前无法获得鱼类血液学的自动化技术,依赖于缓慢、劳动密集型和主观的人工技术。由于缺乏技术进步,也导致缺乏参考数据来确定适当的“正常”本底水平。该项目的总体目标是开发和验证评估水产养殖中大西洋鲑鱼贫血的有效方法,该方法可被该行业采纳并纳入其常规鱼类健康管理方案。目前正在对现有的兽医和医用血液学设备进行验证,以评估鱼的血液,由于鱼的血细胞是有核的,这一点要困难得多。然而,一旦建立和验证了相关技术,它们将被用于调查鱼类的贫血,并将这些结果放入更广泛的鱼类健康测量范围内,使用高通量、自动化医疗技术来评估临床化学和免疫学终点,并在涉及相同合作伙伴的单独(SAIC资助)项目中验证用于鱼类。这项研究的主要好处和影响将是改善鱼类健康管理,增加鱼类福利和生长,随后通过降低成本、增加产量和改善产品质量使该行业受益。开发评估鲑鱼养殖贫血的适当诊断系统需要:a)开发和验证鲑鱼血液的快速、自动化血液学方法,以及b)将血液学数据与有关鱼类健康和疾病的相关终点相结合。采取整体诊断方法,将血液学结果放在通过生物化学和免疫学终点的高通量评估和组织分析调查的鱼类健康的背景下。这一创新方法提供了有关贫血原因的信息,从而能够确定解决方案。需要在血液样本的准备和储存、数据解释方面进行创新,特别是在纳入与贫血有关的生理影响方面。目前在鱼类血液学方面缺乏参考值,这项工作将有助于建立有利于苏格兰鲑鱼水产养殖业的参考数据。在项目的最后阶段,将识别、定义和量化苏格兰各地不同地点的大西洋鲑鱼贫血,并使用血液学、临床化学和免疫学高通量分析仪测量其影响,将其整合到主动的机械化技术先进方法中,以评估鱼类健康。这些技术与英国和国际上的三文鱼水产养殖业相关,应制定用户友好的实用指南和协议,并举办参与研讨会,提供动手培训和实践,以鼓励将这些技术纳入整个行业,大大增加这项研究的影响。
英文摘要
Over the last 12 months anaemia has emerged as a significant threat to fish health in salmon aquaculture in Scotland. Anaemia occurs when there is a lack of red blood cells, reducing the oxygen carrying capacity of the blood and negatively impacting on fish health and production. Through recent SAIC project meetings with the aquaculture partners it was highlighted that the industry has limited practical methods to define the type of anaemia occurring, identify its source and subsequently develop a preventative strategy against it. The Scottish aquaculture industry is looking to establish a haematology monitoring programme, to characterise and quantify the impact of anaemia, but does not currently have access to automated technologies for fish haematology and is reliant on slow, labour intensive and subjective manual techniques. This lack of technological advancement has also resulted in a lack of reference data for the establishment of appropriate 'normal' background levels. The overall aim of this project is the development and validation of efficient methods to assess anaemia in Atlantic salmon in aquaculture that can be adopted by the industry and included into their regular fish health management programmes. This is being undertaken by the validation of existing veterinary and medical haematology devices for assessment of fish blood, which is considerably more difficult owing to fish blood cells being nucleated. However once the relevant techniques are established and validated they shall be used to investigate anaemia in fish and to put those results into the wider context of fish health measured using high throughput, automated medical technologies to assess clinical chemistry and immunology endpoints validated for use with fish in a separate (SAIC funded) project involving the same collaborative partners.The main benefit and impact of this research shall be improvements in fish health management, increasing fish welfare and growth, subsequently benefiting the industry by a reduction in costs, increased yield and improved product quality. The development of an appropriate diagnostic system to assess anaemia in salmon aquaculture requires; a) the development and validation of rapid, automated haematological methods for salmon blood, and b) the integration of this haematology data with relevant endpoints on fish health and disease. A holistic diagnostic approach is taken, placing the haematology findings in the context of fish health investigated by the high throughput assessment of biochemistry and immunology endpoints and histological analysis. This innovative approach provides information on the cause of anaemia, thereby allowing identification of solutions. Innovation is needed in the area of blood sample preparation and storage, data interpretation and particularly with the integration of physiological impacts associated with anaemia. There is a current lack of reference values in fish haematology and this work shall contribute towards the establishment of reference data of benefit to the salmon aquaculture industry in Scotland.In the final stage of the project anaemia in Atlantic salmon from various sites around Scotland shall be identified, defined, quantified and its impact measured using haematological, clinical chemistry and immunology high-throughput analysers integrated into a pro-active mechanised technologically advanced method to assess fish heath. These techniques are relevant to the salmon aquaculture industry in the UK and internationally and user friendly practical guides and protocols shall be developed along with an engagement workshop to offer hands on training and practice to encourage the inclusion of these techniques throughout the industry, greatly increasing the impact of this research.
期刊论文(1)
专著(0)
科研奖励(0)
会议论文
Anemia in salmon aquaculture: Scotland as a case study.
鲑鱼水产养殖中的贫血:苏格兰作为案例研究。
DOI: 10.1016/j.aquaculture.2021.737313
发表时间: 2022-01-15
期刊: Aquaculture (Amsterdam, Netherlands)
影响因子: --
作者: [Currie AR, Cockerill D, Diez-Padrisa M, Haining H, Henriquez FL, Quinn B]
通讯作者: Quinn B
国内基金
海外基金
OBSL1功能缺失导致多指(趾)畸形的分子机制及其临床诊断价值
  • 批准号:
    82372328
  • 项目类别:
    面上项目
  • 资助金额:
    49.00万元
  • 批准年份:
    2023
  • 负责人:
    项盈
  • 依托单位:
HER2特异性双抗原表位识别诊疗一体化探针研制与临床前诊疗效能研究
  • 批准号:
    82372014
  • 项目类别:
    面上项目
  • 资助金额:
    48.00万元
  • 批准年份:
    2023
  • 负责人:
    魏伟军
  • 依托单位: