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Proteomic Analysis of Apis cerana and Apis mellifera Larvae Fed with Heterospecific Royal Jelly and by CSBV Challenge

机译:异种蜂王浆和CSBV挑战饲喂的蜜蜂和蜜蜂幼虫的蛋白质组学分析

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摘要

Chinese honeybee Apis cerana (Ac) is one of the major Asian honeybee species for local apiculture. However, Ac is frequently damaged by Chinese sacbrood virus (CSBV), whereas Apis mellifera (Am) is usually resistant to it. Heterospecific royal jelly (RJ) breeding in two honeybee species may result in morphological and genetic modification. Nevertheless, knowledge on the resistant mechanism of Am to this deadly disease is still unknown. In the present study, heterospecific RJ breeding was conducted to determine the effects of food change on the larval mortality after CSBV infection at early larval stage. 2-DE and MALDI-TOF/TOF MS proteomic technology was employed to unravel the molecular event of the bees under heterospecific RJ breeding and CSBV challenge. The change of Ac larval food from RJC to RJM could enhance the bee resistance to CSBV. The mortality rate of Ac larvae after CSBV infection was much higher when the larvae were fed with RJC compared with the larvae fed with RJM. There were 101 proteins with altered expressions after heterospecific RJ breeding and viral infection. In Ac larvae, 6 differential expression proteins were identified from heterospecific RJ breeding only, 21 differential expression proteins from CSBV challenge only and 7 differential expression proteins from heterospecific RJ breeding plus CSBV challenge. In Am larvae, 17 differential expression proteins were identified from heterospecific RJ breeding only, 26 differential expression proteins from CSBV challenge only and 24 differential expression proteins from heterospecific RJ breeding plus CSBV challenge. The RJM may protect Ac larvae from CSBV infection, probably by activating the genes in energy metabolism pathways, antioxidation and ubiquitin-proteasome system. The present results, for the first time, comprehensively descript the molecular events of the viral infection of Ac and Am after heterospecific RJ breeding and are potentially useful for establishing CSBV resistant populations of Ac for apiculture.
机译:中国蜜蜂中华蜜蜂是亚洲本地养蜂业的主要蜜蜂之一。但是,Ac经常被中国虫病毒(CSBV)破坏,而蜜蜂(Apis mellifera)(Am)通常对此具有抗性。在两种蜜蜂中繁殖异种蜂王浆(RJ)可能会导致形态和基因修饰。然而,关于Am对这种致命疾病的抗性机制的知识仍是未知的。在本研究中,进行异种RJ育种以确定在幼虫早期CSBV感染后食物变化对幼虫死亡率的影响。采用2-DE和MALDI-TOF / TOF MS蛋白质组学技术,揭示了异种RJ育种和CSBV攻击下蜜蜂的分子事件。将幼虫食物从RJC改为RJM可以增强蜜蜂对CSBV的抵抗力。与RJM喂养的幼虫相比,RJC喂养的幼虫CSBV感染后Ac幼虫的死亡率要高得多。异种RJ繁殖和病毒感染后,有101个蛋白的表达发生了改变。在Ac幼虫中,仅从异种RJ育种中鉴定出6种差异表达蛋白,仅从CSBV挑战中鉴定出21种差异表达蛋白,从异种RJ育种中加上CSBV挑战鉴定出7种差异表达蛋白。在Am幼虫中,仅从异种RJ育种中鉴定出17种差异表达蛋白,仅从CSBV挑战中鉴定出26种差异表达蛋白,从异种RJ育种中再鉴定CSBV挑战而鉴定出24种差异表达蛋白。 RJM可能通过激活能量代谢途径,抗氧化和泛素-蛋白酶体系统中的基因来保护Ac幼虫免受CSBV感染。本研究结果首次全面描述了异种RJ育种后Ac和Am病毒感染的分子事件,对于建立CSBV抗性Ac种群进行养蜂可能具有潜在意义。

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