Department of Agricultural Biotechnology, Seoul National University, Seoul, 08826, Republic of Korea.
Sci Rep. 2017 Aug 7;7(1):7461. doi: 10.1038/s41598-017-07822-4.
Increasing the rate of food consumption is a common adaptive strategy that allows herbivores to compensate for declines in nutrient concentrations in plant tissues. Herbivores that are better able to compensate for dietary dilution may have selective advantages under nutritionally poor conditions. In order for compensatory feeding to respond to selection, there must be standing heritable variation for this trait. However, empirical data substantiating the adaptive significance and genetic variability of compensatory feeding are rare. By employing a full-sib, split-brood design, this study presents quantitative genetic analyses on the nutrient consumption rates of the generalist caterpillar, Spodoptera exigua, raised on semi-synthetic diets differing in nutrient concentrations. When encountering a diluted diet, caterpillars exhibited a compensatory increase in food consumption rate, but the extent of this increase was not sufficient to fully compensate for dietary dilution. A significant gene-environment interaction for consumption rate indicated that the capacity of caterpillars to compensate for dietary dilution varied across genotypes. The broad-sense heritability of compensatory feeding was 0.51. Caterpillar genotypes with a higher compensatory capacity suffered lower performance losses on the diluted diet than did those with a lower capacity. This study has implications for understanding how herbivores can evolutionarily respond to nutritional challenges.
增加食物摄取率是一种常见的适应策略,使食草动物能够补偿植物组织中营养浓度的下降。能够更好地补偿饮食稀释的食草动物在营养较差的条件下可能具有选择优势。为了使补偿性喂养对选择产生反应,必须存在这种性状的遗传变异性。然而,支持补偿性喂养的适应性意义和遗传变异性的经验数据很少。本研究采用全同胞、分群设计,对以不同营养浓度的半合成饮食饲养的普通毛虫 Spodoptera exigua 的营养物质消耗率进行了定量遗传分析。当遇到稀释的饮食时,毛毛虫表现出食物摄取率的补偿性增加,但这种增加的程度不足以完全补偿饮食的稀释。消耗率的显著基因-环境相互作用表明,毛毛虫补偿饮食稀释的能力在不同基因型之间存在差异。补偿性喂养的广义遗传力为 0.51。补偿能力较高的毛毛虫在稀释饮食上的表现损失低于补偿能力较低的毛毛虫。本研究对于理解食草动物如何能够进化应对营养挑战具有重要意义。