University of Cologne, Department of Biology, Institute for Zoology, Zülpicher Str. 47b, 50674 Cologne, Germany.
Division of Animal Physiology and Neurobiology, Zoological Institute, Katholieke Universiteit Leuven, B-3000 Leuven, Belgium; Centre for Environmental Sciences, Environmental Biology, Hasselt University, Diepenbeek, Belgium.
J Insect Physiol. 2022 Jan;136:104326. doi: 10.1016/j.jinsphys.2021.104326. Epub 2021 Nov 10.
We compiled a comprehensive list of 67 precursor genes encoding neuropeptides and neuropeptide-like peptides using the Schistocerca gregaria genome and several transcriptome datasets. 11 of these 67 precursor genes have alternative transcripts, bringing the total number of S. gregaria precursors identified in this study to 81. Based on this precursor information, we used different mass spectrometry approaches to identify the putative mature, bioactive peptides processed in the nervous system of S. gregaria. The thereby generated dataset for S. gregaria confirms significant conservation of the entire neuropeptidergic gene set typical of insects and also contains precursors typical of Polyneoptera only. This is in striking contrast to the substantial losses of peptidergic systems in some holometabolous species. The neuropeptidome of S. gregaria, apart from species-specific sequences within the known range of variation, is quite similar to that of Locusta migratoria and even to that of less closely related Polyneoptera. With the S. gregaria peptidomics data presented here, we have thus generated a very useful source of information that could also be relevant for the study of other polyneopteran species.
我们使用沙漠蝗基因组和几个转录组数据集,编制了一份包含 67 种编码神经肽和神经肽样肽的前体基因的综合清单。这 67 个前体基因中有 11 个具有替代转录本,使本研究中鉴定的沙漠蝗前体总数达到 81 个。基于这些前体信息,我们使用不同的质谱方法来鉴定在沙漠蝗神经系统中加工的假定成熟、生物活性肽。由此产生的沙漠蝗数据集证实了昆虫典型的整个神经肽基因簇的显著保守性,同时还包含仅在多翅目昆虫中才有的前体。这与某些全变态物种中肽能系统的大量丧失形成鲜明对比。除了已知变异范围内的物种特异性序列外,沙漠蝗的神经肽组与飞蝗非常相似,甚至与亲缘关系较远的多翅目昆虫也非常相似。通过呈现这里的沙漠蝗肽组学数据,我们生成了一个非常有用的信息源,这对于研究其他多翅目昆虫也可能具有相关性。