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足够胖过冬了吗?营养状况会影响滞育吗?

Fat enough for the winter? Does nutritional status affect diapause?

机构信息

Department of Entomology and Nematology, The University of Florida, Gainesville, FL, United States.

Department of Entomology and Nematology, The University of Florida, Gainesville, FL, United States.

出版信息

J Insect Physiol. 2023 Mar;145:104488. doi: 10.1016/j.jinsphys.2023.104488. Epub 2023 Jan 27.

Abstract

Many insects enter a dormant state termed diapause in anticipation of seasonal inhospitable conditions. Insects drastically reduce their feeding during diapause. Their reduced nutrient intake is paired with substantial nutrient costs: maintaining basal metabolism during diapause, repairing tissues damaged by adverse conditions, and resuming development after diapause. Many investigators have asked "Does nutrition affect diapause?" In this review, we survey the studies that have attempted to address this question. We propose the term nutritional status, a holistic view of nutrition that explicitly includes the perception, intake, and storage of the great breadth of nutrients. We examine the studies that have sought to test if nutrition affects diapause, trying to identify specific facets of nutritional status that affect diapause phenotypes. Curiously, low quality host plants during the diapause induction phase generally induce diapause, but food deprivation during the same phase generally averts diapause. Using the geometric framework of nutrition to identify specific dietary components that affect diapause may reconcile these contrasting findings. This framework can establish nutritionally permissive space, distinguishing nutrient changes that affect diapause from changes that induce other dormancies. Refeeding is another important experimental technique that distinguishes between diapause and quiescence, a non-diapause dormancy. We also find insufficient evidence for the hypothesis that nutrient stores regulate diapause length and suggest manipulations to investigate the role of nutrient stores in diapause termination. Finally, we propose mechanisms that could interface nutritional status with the diapause program, focusing on combined action of the nutritional axis between the gut, fat body, and brain.

摘要

许多昆虫进入休眠状态,称为滞育,以应对季节性不利条件。昆虫在滞育期间会大幅减少进食。它们的营养摄入减少伴随着大量的营养成本:在滞育期间维持基础代谢,修复因不利条件而受损的组织,并在滞育后恢复发育。许多研究人员都曾问过:“营养会影响滞育吗?” 在这篇综述中,我们调查了试图回答这个问题的研究。我们提出了营养状况的概念,这是一种对营养的整体看法,明确包括对各种营养物质的感知、摄入和储存。我们检查了试图测试营养是否影响滞育的研究,试图确定影响滞育表型的营养状况的具体方面。奇怪的是,在滞育诱导阶段质量较差的宿主植物通常会诱导滞育,但在同一阶段的食物剥夺通常会避免滞育。使用营养的几何框架来识别影响滞育的特定饮食成分可能会调和这些相互矛盾的发现。该框架可以建立营养许可空间,区分影响滞育和诱导其他休眠的营养变化。再喂养是另一种重要的实验技术,可区分滞育和非滞育休眠的静止状态。我们还发现,营养储存调节滞育持续时间的假设证据不足,并提出了操纵实验来研究营养储存在滞育终止中的作用。最后,我们提出了可以将营养状况与滞育程序联系起来的机制,重点是肠道、脂肪体和大脑之间的营养轴的联合作用。

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