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水蚤的饲养和实验用途:控制动物营养,评估寿命和生活史特征。

Rearing and Experimental Uses of Daphnia: Controlling Animal Nutrition and Assessing Lifespan and Life-History Traits.

机构信息

Department of Biology, Trent University, Peterborough, Ontario, Canada.

出版信息

Curr Protoc. 2024 Jun;4(6):e1064. doi: 10.1002/cpz1.1064.

Abstract

Caloric restriction has been found to extend the lifespan of many organisms including mammals and other vertebrates. With lifespans exceeding months to years, age-related experiments involving fish and mammals can be overtly costly, both in terms of time and funding. The freshwater crustacean, Daphnia, has a relatively short lifespan (∼50 to 100 days), which makes it a cost-effective alternative animal model for longevity and aging studies. Besides age-specific mortality, there are a suite of physiological responses connected to "healthspan" that can be tracked as these animals age including growth, reproduction, and metabolic rates. These responses can be complemented by assessment of molecular and cellular processes connected to aging and health. Lifespan and metabolism of this model organism is responsive to long studied modulators of aging, such as rearing temperature and nutritional manipulation, but also pharmacological agents that target aging, e.g., rapamycin, which adds to its usefulness as a model organism. Here we describe how to culture Daphnia for aging experiments including maintaining laboratory populations of Daphnia mothers, growing algal food, and manipulating nutrition of these animals. In addition, we provide methods for tracking common physiological and longevity responses of Daphnia. This protocol provides researchers planning to use this model organism with methods to establish and maintain Daphnia populations and to standardize their experimental approaches. © 2024 The Authors. Current Protocols published by Wiley Periodicals LLC. Basic Protocol 1: Culturing algae for Daphnia food Basic Protocol 2: General methods for culturing Daphnia Basic Protocol 3: Standardizing and controlling nutrition for experimental Daphnia Basic Protocol 4: Monitoring Daphnia lifespan Basic Protocol 5: Evaluating Daphnia health: Heart rate and respiration, body mass and growth rates, and reproduction.

摘要

热量限制已被发现可延长许多生物的寿命,包括哺乳动物和其他脊椎动物。由于鱼类和哺乳动物的寿命超过数月至数年,因此涉及鱼类和哺乳动物的与年龄相关的实验在时间和资金方面都非常昂贵。淡水甲壳类动物——水蚤的寿命相对较短(约 50 至 100 天),这使其成为研究长寿和衰老的经济有效的替代动物模型。除了特定年龄的死亡率外,还有一系列与“健康寿命”相关的生理反应可以随着这些动物的衰老而跟踪,包括生长、繁殖和代谢率。这些反应可以通过评估与衰老和健康相关的分子和细胞过程来补充。这种模式生物的寿命和新陈代谢对长期研究的衰老调节剂有反应,例如饲养温度和营养操作,但也对靶向衰老的药物有反应,例如雷帕霉素,这增加了它作为模型生物的有用性。在这里,我们描述了如何培养水蚤进行衰老实验,包括维持水蚤母亲的实验室种群、培养藻类食物以及操纵这些动物的营养。此外,我们还提供了跟踪水蚤常见生理和长寿反应的方法。本协议为计划使用这种模式生物的研究人员提供了建立和维持水蚤种群以及标准化其实验方法的方法。 © 2024 作者。Wiley Periodicals LLC 出版的《当代协议》。基本方案 1:培养水蚤食物的藻类基本方案 2:培养水蚤的一般方法基本方案 3:标准化和控制实验用 Daphnia 的营养基本方案 4:监测 Daphnia 的寿命基本方案 5:评估 Daphnia 的健康状况:心率和呼吸、体重和生长率以及繁殖。

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