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豇豆象成虫多型现象在形态学和能量代谢方面的差异

Divergence in the Morphology and Energy Metabolism of Adult Polyphenism in the Cowpea Beetle .

作者信息

Du Zhong, Liu Xiaokun, Liu Sipei, Jiang Lei, Zong Le, Li Wenjie, Fan Weili, Zhang Lijie, Wu Fengming, Ge Siqin

机构信息

Key Laboratory of Zoological Systematics and Evolution, Institute of Zoology, Chinese Academy of Sciences, Beijing 100101, China.

University of Chinese Academy of Sciences, Beijing 100101, China.

出版信息

Insects. 2024 Dec 30;16(1):29. doi: 10.3390/insects16010029.

Abstract

Adult polyphenism is a prevalent form of adaptive evolution that enables insects to generate discrete phenotypes based on environmental factors. However, the morphology and molecular mechanisms underlying adult dimorphism in (a global storage pest) remain elusive. Understanding these mechanisms is crucial for predicting the dispersal and population dynamics of . This knowledge can also provide a theoretical basis for biological control strategies. In this study, we compared the morphology of the hind wing and chest muscles, the transcriptional profiles, the energy metabolism substances, and the fecundity between the flight form and the normal form. The flight form displays a lighter overall appearance with small black spots, while the normal form lacks most flight muscles. Moreover, there are differences in the energy metabolism pathways between the two forms, including carbohydrate metabolism and oxidative phosphorylation. The flight form exhibits higher contents of carbohydrates, lipids, and mitochondrial energetic storage. The normal form exhibits better fertility but has lost its ability to fly. This is the first study to analyze the morphology and molecular characteristics of adult polyphenism in using morphological, physiological, and behavioral approaches, providing a foundational understanding of these aspects. Our study on also provides supporting evidence of a trade-off between dispersion and reproduction, where the flight form is capable of flying while the normal form has more reproductive benefits.

摘要

成虫多型现象是一种普遍的适应性进化形式,使昆虫能够根据环境因素产生不同的表型。然而,(一种全球储粮害虫)成虫二型性的形态和分子机制仍不清楚。了解这些机制对于预测该害虫的扩散和种群动态至关重要。这一知识也可为生物防治策略提供理论基础。在本研究中,我们比较了飞行型和正常型之间后翅和胸部肌肉的形态、转录谱、能量代谢物质以及繁殖力。飞行型整体外观较浅,有小黑点,而正常型缺乏大多数飞行肌肉。此外,两种类型在能量代谢途径上存在差异,包括碳水化合物代谢和氧化磷酸化。飞行型表现出较高的碳水化合物、脂质和线粒体能量储备含量。正常型表现出更好的繁殖力,但失去了飞行能力。这是第一项使用形态学、生理学和行为学方法分析该害虫成虫多型现象的形态和分子特征的研究,为这些方面提供了基本的认识。我们对该害虫的研究也为扩散和繁殖之间的权衡提供了支持证据,即飞行型能够飞行,而正常型具有更多的繁殖优势。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3b6d/11765952/8a24e74e643a/insects-16-00029-g001.jpg

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