New insights into maternal egg care in insects: egg transport as an adaptive behavior to extreme temperatures in the European earwig

A. Cohuet
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Abstract

Because of the inability of eggs to move, the fitness of oviparous organisms is particularly dependent on the oviposition site. The choice of oviposition site by mothers is therefore the result of trade-offs between exposure to risk factors or favorable conditions such as the presence/absence of predators, the threat of extreme temperatures, the risk of desiccation, the presence and quality of nutritional resources... In addition to these trade-offs between different biotic and abiotic factors that determine oviposition site selection, the ability of mothers to move their eggs after oviposition is a game-changer in insect strategies to optimize egg development and survival [1]. Oviposition site selection combined with egg transport has been explored in insects in relation to the risk of exposure to egg parasitoids [2] or needs for oxygenation [3] but surprisingly has not been investigated in regards to temperatures. Considering egg transport in the ability of insects to adapt their behavior to environmental conditions and in particular to potential extreme temperatures is yet inherent in providing a complete picture of the diversity of behaviors that shape adaptation to temperature and potential tolerance to climate change. In this sense, the study presented by Tourneur et al. [4], explores whether insects capable of egg-care might use egg transport as an adaptive behavior to protect them from suboptimal or extreme temperatures. The study was conducted in the European earwig, Forficula auricularia Linnaeus, 1758, which is known to practice eggcare in a variety of ways, that presumably includes egg-transportation, for several weeks Open Access
对昆虫母卵护理的新见解:卵运输是欧洲蠼螋对极端温度的适应行为
由于卵不能移动,卵生生物的适应性特别依赖于产卵地点。因此,母亲对产卵地点的选择是在风险因素和有利条件之间权衡的结果,如捕食者的存在/不存在、极端温度的威胁、干燥的风险、营养资源的存在和质量……除了这些决定产卵地点选择的不同生物和非生物因素之间的权衡之外,母亲在产卵后移动卵子的能力是昆虫优化卵子发育和存活策略的游戏规则改变者[1]。昆虫的产卵地点选择与卵运输的关系已被探讨[2]或暴露于卵类寄生物的风险或氧合需求[3],但令人惊讶的是,尚未对温度进行研究。考虑到昆虫在适应环境条件,特别是潜在的极端温度的能力中调整其行为的卵运输能力,仍然是提供形成对温度适应和对气候变化的潜在耐受性的行为多样性的完整图景所固有的。从这个意义上讲,Tourneur等人[4]的研究探讨了能够育卵的昆虫是否会将卵运输作为一种适应性行为来保护它们免受次优或极端温度的影响。这项研究是在1758年的欧洲土蜈蚣Forficula auricularia Linnaeus中进行的,众所周知,它以多种方式护理卵子,其中可能包括运输卵子,持续数周
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