Horch Hadley W, Spicer Sara B, Low Isabel I C, Joncas Colby T, Quenzer Eleanor D, Okoya Hikmah, Ledwidge Lisa M, Fisher Harrison P
Department of Biology and Neuroscience, Bowdoin College, Brunswick, Maine.
J Comp Neurol. 2020 Mar 1;528(4):687-702. doi: 10.1002/cne.24790. Epub 2019 Oct 24.
Guidance cues act during development to guide growth cones to their proper targets in both the central and peripheral nervous systems. Experiments in many species indicate that guidance molecules also play important roles after development, though less is understood about their functions in the adult. The Semaphorin family of guidance cues, signaling through Plexin receptors, influences the development of both axons and dendrites in invertebrates. Semaphorin functions have been extensively explored in Drosophila melanogaster and some other Dipteran species, but little is known about their function in hemimetabolous insects. Here, we characterize sema1a and plexA in the cricket Gryllus bimaculatus. In fact, we found two distinct predicted Sema1a proteins in this species, Sema1a.1 and Sema1a.2, which shared only 48% identity at the amino acid level. We include a phylogenetic analysis that predicted that many other insect species, both holometabolous and hemimetabolous, express two Sema1a proteins as well. Finally, we used in situ hybridization to show that sema1a.1 and sema1a.2 expression patterns were spatially distinct in the embryo, and both roughly overlap with plexA. All three transcripts were also expressed in the adult brain, mainly in the mushroom bodies, though sema1a.2 was expressed most robustly. sema1a.2 was also expressed strongly in the adult thoracic ganglia while sema1a.1 was only weakly expressed and plexA was undetectable.
导向线索在发育过程中发挥作用,引导生长锥在中枢神经系统和外周神经系统中到达其合适的靶点。许多物种的实验表明,导向分子在发育后也发挥重要作用,尽管人们对它们在成体中的功能了解较少。通过丛状蛋白受体发出信号的信号素导向线索家族,影响无脊椎动物轴突和树突的发育。信号素的功能已在黑腹果蝇和其他一些双翅目物种中得到广泛研究,但对它们在渐变态昆虫中的功能了解甚少。在这里,我们对双斑蟋中的sema1a和plexA进行了表征。事实上,我们在该物种中发现了两种不同的预测Sema1a蛋白,即Sema1a.1和Sema1a.2,它们在氨基酸水平上的同一性仅为48%。我们进行了系统发育分析,预测许多其他全变态和渐变态昆虫物种也表达两种Sema1a蛋白。最后,我们使用原位杂交来表明,sema1a.1和sema1a.2在胚胎中的表达模式在空间上是不同的,并且两者都大致与plexA重叠。所有三种转录本在成体大脑中也有表达,主要在蘑菇体中,不过sema1a.2的表达最为强烈。sema1a.2在成体胸神经节中也强烈表达,而sema1a.1仅弱表达,plexA则无法检测到。