The importance of time in nutrient regulation: a case study with spotted-wing Drosophila (Drosophila suzukii)

C. Deans, W. Hutchison
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Abstract

The ability of living organisms to acquire the nutrients needed to carry out required physiological functions has important consequences for fitness. However, an organism must not simply meet the requirements for individual nutrients, but must ingest an optimal balance of multiple nutrients. Despite this, animals rarely consume truly balanced resources, and instead commonly feed selectively across multiple unbalanced resources to reach an optimal balance, i.e., intake target. Nutritional research has predominantly focused on the behavioral strategies employed during nutrient regulation, as well as the fitness consequence of failing to meet intake targets, but little work has been done on the temporal aspects of this process. For instance, within what timeframe must organisms reach their intake target before a fitness cost is incurred? Hours, days, weeks?In this study, we investigated how nutrient regulation interval impacts consumption and performance in adult female spotted-wing Drosophila (Drosophila suzukii). Females were constrained to either a protein- orcarbohydrate-biased diet over different time intervals and at different schedules, while control flies were constrained to one diet for the entire feeding period.Regulation interval had a significant impact on feeding behavior and consumption. Total consumption was highest on the shorter interval treatments, where diets were alternated more frequently, and declined as the interval period increased. The relative consumption of both diets was statistically-different across intervals and was higher for the carbohydrate-biased diet. Consumption of the protein-biased diet was more variable across intervals and was more strongly impacted by the daily timing of diet switches. Performance data showed that shorter regulation intervals led to longer fly lifespans, a result commonly observed in studies exploring the impacts of diet macronutrient ratio variability on performance.These results show that the temporal aspects of nutrition, such as feeding intervals and the timing of resource availability, can have strong impacts on feeding behavior, nutrient regulation, and fitness. These results provide an insight into how consumers may deal with changes in host phenology, the availability of hosts, and changes in nutrient availability within hosts. Understanding these mechanisms will be important for predicting responses to changes in nutrient cycling and resource availability mediated by natural and anthropogenic habitat modifications, such as global climate change.
时间在营养调节中的重要性:以斑翼果蝇为例
生物体获得所需营养以执行所需生理功能的能力对健康具有重要影响。然而,一个有机体不能简单地满足对单个营养素的需求,而是必须摄入多种营养素的最佳平衡。尽管如此,动物很少消耗真正平衡的资源,而通常是选择性地在多个不平衡的资源之间进行饲料,以达到最佳平衡,即采食量目标。营养研究主要集中在营养调节过程中所采用的行为策略,以及未能达到摄入目标的健康后果,但对这一过程的时间方面的研究很少。例如,在产生适应成本之前,生物体必须在什么时间范围内达到它们的摄入目标?几小时,几天,几周?在本研究中,我们研究了营养调节间隔对成年雌性斑翼果蝇(Drosophila suzukii)消耗和性能的影响。雌性果蝇在不同的时间间隔和不同的时间表上被限制在蛋白质或碳水化合物为主的饮食中,而对照果蝇在整个喂食期被限制在一种饮食中。调节间隔对摄食行为和摄食有显著影响。在较短的间隔处理中,总消耗量最高,其中饮食交替更频繁,并且随着间隔时间的增加而下降。两种饮食的相对消耗量在间隔上存在统计学差异,并且碳水化合物偏向饮食的相对消耗量更高。蛋白质偏倚饮食的消耗在不同的时间间隔中变化更大,并且受到日常饮食转换时间的更强烈影响。性能数据显示,更短的调节间隔导致更长的苍蝇寿命,这一结果在探索饮食宏量营养素比例变化对性能影响的研究中经常观察到。这些结果表明,营养的时间方面,如摄食间隔和资源可用性的时间,可以对摄食行为、营养调节和适合度产生强烈影响。这些结果为消费者如何应对寄主物候、寄主可利用性和寄主内营养可利用性的变化提供了见解。了解这些机制对于预测对自然和人为生境改变(如全球气候变化)介导的养分循环和资源可用性变化的响应具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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