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Quantitative Peptidomics Reveal Brain Peptide Signatures Of Behavior

机译:定量肽组学揭示行为的脑肽特征

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The honey bee genome predicts ≈ 100 peptides from 36 prohor-mones, but the functions of many of these peptides are unknown. We used differential isotope labeling combined with mass spec-trometric analysis to quantify ≈ 50% of known bee brain peptides in the context of foraging, with 8 showing robust and dynamic regulation. Some showed differences in brain abundance as a function of experience; specifically, nectar and pollen collection led to quick changes in abundance. These changes were related to the act of food collection, not ingestion, because foragers bring food back to the hive for storage rather than eating it themselves. Other peptide differences in brain abundance were seen in bees that either flew to a nectar feeder or a pollen feeder, but did not yet collect any food. These differences likely reflect well-known predispositions of some bees to collect either nectar or pollen, but not both. Tachykinin, PBAN, and sNPF were among the peptides with the strongest changes in association with nectar and pollen foraging. These peptides are known to be involved in regulating food intake in solitary insects, suggesting an evolutionary connection between that behavior and social foraging. These results demonstrate that it is now possible to use quantitative peptidomics to help determine which brain peptides are bioactive and to elucidate their function in the regulation of behavior.
机译:蜜蜂基因组可以从36种激素中预测≈100种肽,但是其中许多肽的功能尚不清楚。我们使用差分同位素标记与质谱分析相结合,在觅食的背景下量化了约50%的已知蜜蜂脑肽,其中8种表现出强大而动态的调节。一些人的经验表明,他们的大脑丰度存在差异。特别是,花蜜和花粉的收集导致丰度的快速变化。这些变化与食物的收集行为有关,而不是与食物的摄取有关,因为觅食者将食物带回蜂箱进行储存而不是自己食用。在飞到花蜜喂食器或花粉喂食器但尚未收集任何食物的蜜蜂中,发现了其他大脑丰度的多肽差异。这些差异可能反映了众所周知的某些蜜蜂收集花蜜或花粉的倾向,但不能同时收集两者。速激肽,PBAN和sNPF是与花蜜和花粉觅食相关的变化最大的肽。已知这些肽参与调节孤独昆虫的食物摄入,表明该行为与社会觅食之间存在进化联系。这些结果表明,现在有可能使用定量肽组学来帮助确定哪些脑肽具有生物活性,并阐明其在行为调节中的功能。

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