Heat stress has immediate and persistent effects on immunity and development of Tenebrio molitor

IF 4.7 3区 农林科学 Q1 ENTOMOLOGY Journal of Insects as Food and Feed Pub Date : 2023-11-23 DOI:10.1163/23524588-20230095
P. Herren, H. Hesketh, A.M. Dunn, N. V. Meyling
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Abstract

The yellow mealworm (Tenebrio molitor) is a promising insect species for mass-rearing for the production of feed and food. In mass-production systems, insects may be exposed to abiotic stressors such as heat stress as well as potentially lethal pathogens. To ensure mass-reared T. molitor populations are healthy and productive there is a need to understand both the risks, and potential benefits of heat stress, on the fitness of insects and their susceptibility to pathogens. In this study, we investigated the effects of a short (2 h) or a long (14 h) heat stress (38 °C) exposure on the susceptibility and the immune responses of T. molitor larvae exposed to a fungal pathogen (Metarhizium brunneum). Larvae were exposed to the pathogen either immediately or five days after the heat stress treatments. The development of heat stressed larvae and their offspring was also assessed. A short heat stress immediately before exposure to M. brunneum increased the survival probability of T. molitor larvae, which correlated with increased antibacterial activity in the hemolymph. The exposure of larvae to short, or long heat stresses five days before pathogen exposure did not affect their survival, despite a temporary lowered body mass gain of heat stressed larvae. However, heat stressed larvae showed decreased hemocyte concentrations when exposed to M. brunneum. We also found an increased body weight in larval offspring of females that had been exposed to a short heat stress as larvae themselves. These findings demonstrate the importance of understanding the effects of heat stress in the long-term. The beneficial effects of heat stress on pathogen susceptibility in T. molitor and the negative effects on body mass gain are only transient, whereas negative effects on immune response (hemocyte concentrations) persist over an extended period.
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热胁迫对褐天牛的免疫和发育具有直接和持续的影响
黄粉虫(Tenebrio molitor)是一种很有希望用于大规模饲养以生产饲料和食品的昆虫物种。在大规模生产系统中,昆虫可能会面临热应激等非生物应激因素以及潜在的致命病原体。为确保大规模饲养的褐飞虱种群健康、高产,有必要了解热应激对昆虫健康及其对病原体易感性的风险和潜在益处。在这项研究中,我们调查了短时间(2小时)或长时间(14小时)的热胁迫(38 °C)对暴露于真菌病原体(布氏拟杆菌)的褐飞虱幼虫的易感性和免疫反应的影响。幼虫立即或在热胁迫处理后五天接触病原体。还对热胁迫幼虫及其后代的发育情况进行了评估。在接触布鲁氏菌之前的短时间热胁迫提高了褐飞虱幼虫的存活率,这与血淋巴中抗菌活性的提高有关。幼虫在接触病原体前五天受到短时间或长时间的热胁迫都不会影响其存活率,尽管热胁迫幼虫的体重增加会暂时降低。然而,热胁迫幼虫在接触布氏杆菌后血细胞浓度下降。我们还发现,雌性幼虫的后代体重增加了,因为它们在幼虫时期也受到了短暂的热胁迫。这些发现表明了了解热胁迫长期影响的重要性。热胁迫对T. molitor病原体易感性的有利影响和对体重增加的不利影响只是短暂的,而对免疫反应(血细胞浓度)的不利影响则会持续较长时间。
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来源期刊
Journal of Insects as Food and Feed
Journal of Insects as Food and Feed Agricultural and Biological Sciences-Insect Science
CiteScore
7.00
自引率
17.60%
发文量
133
期刊介绍: The Journal of Insects as Food and Feed covers edible insects from harvesting in the wild through to industrial scale production. It publishes contributions to understanding the ecology and biology of edible insects and the factors that determine their abundance, the importance of food insects in people’s livelihoods, the value of ethno-entomological knowledge, and the role of technology transfer to assist people to utilise traditional knowledge to improve the value of insect foods in their lives. The journal aims to cover the whole chain of insect collecting or rearing to marketing edible insect products, including the development of sustainable technology, such as automation processes at affordable costs, detection, identification and mitigating of microbial contaminants, development of protocols for quality control, processing methodologies and how they affect digestibility and nutritional composition of insects, and the potential of insects to transform low value organic wastes into high protein products. At the end of the edible insect food or feed chain, marketing issues, consumer acceptance, regulation and legislation pose new research challenges. Food safety and legislation are intimately related. Consumer attitude is strongly dependent on the perceived safety. Microbial safety, toxicity due to chemical contaminants, and allergies are important issues in safety of insects as food and feed. Innovative contributions that address the multitude of aspects relevant for the utilisation of insects in increasing food and feed quality, safety and security are welcomed.
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