Robo1/Robo4: Different expression patterns in retinal development
EXPERIMENTAL EYE RESEARCH
Authors: Huang, Lvzhen; Yu, Wenzhen; Li, Xiaoxin; Niu, Lanjun; Li, Kai; Li, Juan
Abstract
Two members of the roundabout (Robo) family, Robot and Robo4, serve as neuronal guidance receptors. During neurogenesis, Robot and Robo4 participate in axonal guidance by mediating a repulsive signal. It has been reported that Robo4 is mainly expressed in the vasculature and that Robo1 is expressed both in neural and non-neural tissues. However, the roles of these Robo proteins in the mammalian vasculature are still unclear. In this current study, the expression patterns of Robot and Robo4 in the retinal vasculature were determined using C57BL/6J mice at postnatal days (P) 1, P3, P5, P7, P9, P12, P14, P17, P21 and adult mice (1 month). We found that Robo4 was expressed not only in the retinal vessels but also in the retinal ganglion cell and photoreceptor layers during retinal development. Robo4 expression peaked at P3 and P9, which suggest that Robo4 may function in stabilizing the retinal vasculature. Robo1 expression was observed in the retina neuronal cells and vessels. Both Robot mRNA and protein expression showed a typical expression pattern, which related to Robo1's roles in the different stages of retinal vascular development in the murine retina. Robo1 displayed high expression levels at PI (correlated with superficial vascular plexus formation) and P7 (correlated with deep vascular plexus formation). The high levels of Robo1 during these two well-defined phases of retinal capillary plexus formation indicate that Robo1 is likely to play a part in retinal neovascularization. (C) 2008 Elsevier Ltd. All rights reserved.
Genome-wide association study of antibody response to Newcastle disease virus in chicken
BMC GENETICS
Authors: Luo, Chenglong; Qu, Hao; Ma, Jie; Wang, Jie; Li, Chunyu; Yang, Chunfen; Hu, Xiaoxiang; Li, Ning; Shu, Dingming
Abstract
Background: Since the first outbreak in Indonesia in 1926, Newcastle disease has become one of the most common and contagious bird diseases throughout the world. To date, enhancing host antibody response by vaccination remains the most efficient strategy to control outbreaks of Newcastle disease. Antibody response plays an important role in host resistance to Newcastle disease, and selection for antibody response can effectively improve disease resistance in chickens. However, the molecular basis of the variation in antibody response to Newcastle disease virus (NDV) is not clear. The aim of this study was to detect genes modulating antibody response to NDV by a genome-wide association study (GWAS) in chickens. Results: To identify genes or chromosomal regions associated with antibody response to NDV after immunization, a GWAS was performed using 39,833 SNP markers in a chicken F-2 resource population derived from a cross between two broiler lines that differed in their resistance. Two SNP effects reached 5% Bonferroni genome-wide significance (P < 1.26x10(-6)). These two SNPs, rs15354805 and rs15355555, were both on chicken (Gallus gallus) chromosome 1 and spanned approximately 600 Kb, from 100.4 Mb to 101.0 Mb. Rs15354805 is in intron 7 of the chicken Roundabout, axon guidance receptor, homolog 2 (ROBO2) gene, and rs15355555 is located about 243 Kb upstream of ROBO2. Rs15354805 explained 5% of the phenotypic variation in antibody response to NDV, post immunization, in chickens. Rs15355555 had a similar effect as rs15354805 because of its linkage disequilibrium with rs15354805 (r(2) = 0.98). Conclusion: The region at about 100 Mb from the proximal end of chicken chromosome 1, including the ROBO1 and ROBO2 genes, has a strong effect on the antibody response to the NDV in chickens. This study paves the way for further research on the host immune response to NDV.