首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Transcriptomic, peptidomic, and mass spectrometry imaging analysis of the brain in the ant Cataglyphis nodus
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Transcriptomic, peptidomic, and mass spectrometry imaging analysis of the brain in the ant Cataglyphis nodus

机译:蚁胚瓣末骨脑中大脑的转录组,肽组和质谱成像分析

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摘要

Behavioral flexibility is an important cornerstone for the ecological success of animals. Social Cataglyphis nodus ants with their age-related polyethism characterized by age-related behavioral phenotypes represent a prime example for behavioral flexibility. We propose neuropeptides as powerful candidates for the flexible modulation of age-related behavioral transitions in individual ants. As the neuropeptidome of C. nodus was unknown, we collected a comprehensive peptidomic data set obtained by transcriptome analysis of the ants' central nervous system combined with brain extract analysis by Q-Exactive Orbitrap mass spectrometry (MS) and direct tissue profiling of different regions of the brain by matrix-assisted laser desorption/ionization time-of-flight (MALDI-TOF) MS. In total, we identified 71 peptides with likely bioac-tive function, encoded on 49 neuropeptide-, neuropeptide-like, and protein hormone prepropeptide genes, including a novel neuropeptide-like gene (fliktin). We next characterized the spatial distribution of a subset of peptides encoded on 16 precursor proteins with high resolution by MALDI MS imaging (MALDI MSI) on 14 im brain sections. The accuracy of our MSI data were confirmed by matching the immunostaining patterns for tachykinins with MSI ion images from consecutive brain sections. Our data provide a solid framework for future research into spatially resolved qualitative and quantitative peptidomic changes associated with stage-specific behavioral transitions and the functional role of neuropeptides in Cataglyphis ants.
机译:行为灵活性是动物生态成功的重要基石。以年龄相关的行为表型为特征的具有年龄相关的多发性硬化症的社会性斑潜蚁是行为灵活性的一个主要例子。我们提出神经肽是灵活调节个体蚂蚁年龄相关行为转变的有力候选。由于结节梭菌的神经肽组未知,我们通过对蚂蚁的中枢神经系统进行转录组分析,结合Q-Exactive Orbitrap质谱(MS)的脑提取分析,以及通过基质辅助激光解吸/电离飞行时间(MALDI-TOF)MS对大脑不同区域进行直接组织分析,收集了一组全面的肽组数据,我们鉴定了71种可能具有生物活性的肽,编码在49个神经肽、神经肽样和蛋白质激素前肽基因上,包括一个新的神经肽样基因(fliktin)。接下来,我们通过MALDI MS成像(MALDI MSI)在14个im脑切片上以高分辨率表征了编码在16个前体蛋白上的肽子集的空间分布。通过将速激肽的免疫染色模式与连续脑切片的MSI离子图像进行匹配,我们的MSI数据的准确性得到了证实。我们的数据为未来研究空间分辨的定性和定量肽组变化提供了坚实的框架,这些变化与特定阶段的行为转变以及神经肽在隐纹蚂蚁中的功能作用有关。

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