昆虫学报 ›› 2023, Vol. 66 ›› Issue (5): 713-722.doi: 10.16380/j.kcxb.2023.05.012

• 综 述 • 上一篇    下一篇

基于几何营养模型的昆虫蛋白质和碳水化合物调节的研究进展

孙少磊, 靖湘峰*   

  1. (西北农林科技大学植物保护学院, 旱区作物逆境生物学国家重点实验室, 杨凌 712100)
  • 出版日期:2023-05-20 发布日期:2023-06-01

Research progress in protein-carbohydrate regulation in insects based on geometric framework model

SUN Shao-Lei, JING Xiang-Feng*   

  1.  (State Key Laboratory of Crop Stress Biology for Arid Areas, College of Plant Protection, Northwest A&F University, Yangling 712100, China)
  • Online:2023-05-20 Published:2023-06-01

摘要: 蛋白质和碳水化合物是昆虫食物中的两种基本营养物质。蛋白质是昆虫生长所需的氨基酸来源,而碳水化合物则是活动的能量来源,故两者对昆虫生长发育和繁殖均起重要作用。在自然界中,所有昆虫都会面临营养多变的环境,即作为其食物的植物和猎物会因种类、组织以及发育阶段的不同而产生蛋白质和碳水化合物等营养成分含量的变化。因此,一般情况下昆虫面对复杂的营养环境时,需要具有搜寻并获得合适的营养物质的策略,以使自身的生长发育达到一个最优的状态。几何营养模型(geometric framework model)是调查昆虫营养生理调控机制的有力工具,该模型主要考察昆虫如何协调食物中的不同营养以实现生长、发育、生殖等生命过程的平衡。在植食性昆虫中表明碳氮比和环境因子协同影响昆虫的生长发育,同时可以影响其免疫反应;在捕食性昆虫和社会性昆虫中表明昆虫可以根据自身需求严格调控碳氮营养的摄入;在模式昆虫中表明碳氮比可能在昆虫寿命与生殖方面有一定的平衡作用。本文重点介绍了几何营养模型的工作原理并系统总结了其在各类昆虫中的应用,旨在为昆虫营养生理生态学方面的研究提供新思路。

关键词: 蛋白质, 碳水化合物, 几何营养模型, 营养调控, 生理生态

Abstract:  Protein and carbohydrate are two essential nutrients for insects. Protein is the source of amino acids for insect growth, while carbohydrate is the source of energy for activity. These two nutrients play important roles in insect growth, development and reproduction. In the nature, all insects experience heterogeneous nutritional landscapes, and the contents of proteins and carbohydrates in their food including plants or preys generally vary upon species, tissues or developmental stages. Thus, insects may have some strategies to find the food that contains the proper nutritional composition in their living environment so as to make their growth and development reach the optimal status. Geometric framework model has been demonstrated to be a powerful tool to investigate nutritional physiological regulation mechanisms in insects. This model has been extensively used in how insects coordinate different nutrients in food to achieve the balance of life processes, such as growth, development and reproduction. In herbivores, it is shown that the protein/carbohydrate ratio in food combining with environmental factors can affect the growth and development, as well as the immune response of insects. In predatory and social insects, it is shown that they can strictly regulate the intake of protein and carbohydrate nutrients to meet their needs. In model insects, it is shown that protein/carbohydrate ratio in food may have a balancing effect on lifespan and reproduction in insects. In this review, we introduced the working principle of geometric framework model and systematically summarized its application in insects, aiming to provide new ideas for the study of insect nutrition physiology and ecology.

Key words: Protein, carbohydrate, geometric framework model, nutritional regulation, physiology and ecology