Kwak Hee-Jin, Medina-Jiménez Brenda I, Park Soon Cheol, Kim Jung-Hyeuk, Jeong Geon-Hwi, Jeon Mi-Jeong, Kim Sangil, Kim Jung-Woong, Weisblat David A, Cho Sung-Jin
Department of Biological Sciences and Biotechnology, College of Natural Sciences, Chungbuk National University, Cheongju, Chungbuk, 28644, Republic of Korea.
Department of Ecology, Evolution and Behavior, Faculty of Science, Alexander Silberman Institute of Life Sciences, Hebrew University of Jerusalem, 9190401, Jerusalem, Israel.
Cell Biosci. 2023 Apr 3;13(1):70. doi: 10.1186/s13578-023-01019-1.
Slit and Robo are evolutionarily conserved ligand and receptor proteins, respectively, but the number of slit and robo gene paralogs varies across recent bilaterian genomes. Previous studies indicate that this ligand-receptor complex is involved in axon guidance. Given the lack of data regarding Slit/Robo in the Lophotrochozoa compared to Ecdysozoa and Deuterostomia, the present study aims to identify and characterize the expression of Slit/Robo orthologs in leech development.
We identified one slit (Hau-slit), and two robo genes (Hau-robo1 and Hau-robo2), and characterized their expression spatiotemporally during the development of the glossiphoniid leech Helobdella austinensis. Throughout segmentation and organogenesis, Hau-slit and Hau-robo1 are broadly expressed in complex and roughly complementary patterns in the ventral and dorsal midline, nerve ganglia, foregut, visceral mesoderm and/or endoderm of the crop, rectum and reproductive organs. Before yolk exhaustion, Hau-robo1 is also expressed where the pigmented eye spots will later develop, and Hau-slit is expressed in the area between these future eye spots. In contrast, Hau-robo2 expression is extremely limited, appearing first in the developing pigmented eye spots, and later in the three additional pairs of cryptic eye spots in head region that never develop pigment. Comparing the expression of robo orthologs between H. austinensis and another glossiphoniid leech, Alboglossiphonia lata allows to that robo1 and robo2 operate combinatorially to differentially specify pigmented and cryptic eyespots within the glossiphoniid leeches.
Our results support a conserved role in neurogenesis, midline formation and eye spot development for Slit/Robo in the Lophotrochozoa, and provide relevant data for evo-devo studies related to nervous system evolution.
Slit和Robo分别是进化上保守的配体和受体蛋白,但在最近的两侧对称动物基因组中,slit和robo基因旁系同源物的数量有所不同。先前的研究表明,这种配体-受体复合物参与轴突导向。鉴于与蜕皮动物和后口动物相比,关于冠轮动物中Slit/Robo的数据缺乏,本研究旨在鉴定并表征水蛭发育过程中Slit/Robo直系同源物的表达。
我们鉴定出一个slit(Hau-slit)和两个robo基因(Hau-robo1和Hau-robo2),并在奥斯汀嗜蛭蚓(Helobdella austinensis)的发育过程中对它们的时空表达进行了表征。在整个体节形成和器官发生过程中,Hau-slit和Hau-robo1在腹侧和背侧中线、神经节、前肠、内脏中胚层和/或嗉囊、直肠及生殖器官的内胚层中以复杂且大致互补的模式广泛表达。在卵黄耗尽之前,Hau-robo1也在色素沉着眼点后来发育的部位表达,而Hau-slit在这些未来眼点之间的区域表达。相比之下,Hau-robo2的表达极其有限,首先出现在发育中的色素沉着眼点,随后出现在头部区域另外三对未发育色素的隐匿眼点中。比较奥斯汀嗜蛭蚓和另一种舌蛭科水蛭——宽体金线蛭(Alboglossiphonia lata)中robo直系同源物的表达,发现robo1和robo2以组合方式发挥作用,在舌蛭科水蛭中差异地指定色素沉着和隐匿眼点。
我们的结果支持了Slit/Robo在冠轮动物的神经发生、中线形成和眼点发育中具有保守作用,并为与神经系统进化相关的进化发育生物学研究提供了相关数据。