Nosema ceranaealters a highly conserved hormonal stress pathway in honeybees

东方蜜蜂微孢子虫 生物 脂肪运动激素 章鱼胺(神经递质) 通才与专种 觅食 鼻息肉 蜜蜂 激素 动物 微孢子虫 生态学 细胞生物学 微生物学 遗传学 脂肪体 内分泌学 受体 孢子 栖息地 血清素 幼虫
作者
Christopher Mayack,Myrsini E. Natsopoulou,Dino P. McMahon
出处
期刊:Insect Molecular Biology [Wiley]
卷期号:24 (6): 662-670 被引量:50
标识
DOI:10.1111/imb.12190
摘要

Abstract Nosema ceranae , an emerging pathogen of the western honeybee ( Apis mellifera ), is implicated in recent pollinator losses and causes severe energetic stress. However, whether precocious foraging and accelerated behavioural maturation in infected bees are caused by the infection itself or via indirect energetic stress remains unknown. Using a combination of nutritional and infection treatments, we investigated how starvation and infection alters the regulation of adipokinetic hormone (AKH) and octopamine, two highly conserved physiological pathways that respond to energetic stress by mobilizing fat stores and increasing search activity for food. Although there was no response from AKH when bees were experimentally infected with N. ceranae or starved, supporting the notion that honeybees have lost this pathway, there were significant regulatory changes in the octopamine pathway. Significantly, we found no evidence of acute energetic stress being the only cause of symptoms associated with N. ceranae infection. Therefore, the parasite itself appears to alter regulatory components along a highly conserved physiological pathway in an infection‐specific manner. This indicates that pathogen‐induced behavioural alteration of chronically infected bees should not just be viewed as a coincidental short‐term by‐product of pathogenesis (acute energetic stress) and may be a result of a generalist manipulation strategy to obtain energy for reproduction.
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