Liu Ran, Jin Cong, Wang Zhenyong, Wang Zhaojun, Wang Jian, Wang Lin
College of Animal Science and Veterinary Medicine, Shandong Agricultural University, Daizong Road No. 61, Taian, 271018, People's Republic of China.
Vet Res Commun. 2015 Mar;39(1):31-7. doi: 10.1007/s11259-015-9626-5. Epub 2015 Jan 30.
Manganese (Mn) deficiency can result in perosis in chicks, but the mechanism of Mn deficiency on tibia development remains poorly understood. Ninety one-day-old Arbor Acres male broiler chickens administered with control diet (60 mg Mn/kg) and Mn-deficient diets (40 mg Mn/kg, 8.7 mg Mn/kg) to investigate the effects of Mn deficiency on morphology of tibia and related signal transduction pathways in broiler chickens. At the age of 42 days, the bone trabecula, damaged osteoblasts and OPG/RANKL mRNA expression levels were investigated by histological assessment, electron microscopic examination and real-time quantitative PCR analysis, respectively. Results of histological observations showed that decreased trabecular thickness, trabecular number and trabecular bone area (%) together with increased trabecular bone separation were involved in perosis induced by Mn deficiency. The most striking ultrastructural modifications involved disruption of nuclear membrane and mitochondria outer membrane, loss of mitochondrion cristae and alteration in endoplasmic reticulum in osteoblasts of the Mn-deficient groups. Likewise, Mn deficiency results in a significant (P < 0.05) decrease in the relative mRNA expression levels of OPG and RANKL with a significantly higher RANKL/OPG ratio (P < 0.05). In conclusion, Mn deficiency can affect the development of tibia in broiler chickens, leading to metaphyseal osteoporosis which may be due to decreased OPG/RANKL mRNA expression.
锰(Mn)缺乏会导致雏鸡发生滑腱症,但锰缺乏对胫骨发育的机制仍知之甚少。将90只1日龄的爱拔益加雄性肉鸡分为对照组(锰含量60毫克/千克)和缺锰组(锰含量40毫克/千克、8.7毫克/千克),以研究锰缺乏对肉鸡胫骨形态及相关信号转导通路的影响。在42日龄时,分别通过组织学评估、电子显微镜检查和实时定量PCR分析来研究骨小梁、受损成骨细胞以及骨保护素/核因子κB受体活化因子配体(OPG/RANKL)mRNA表达水平。组织学观察结果显示,缺锰诱发的滑腱症涉及骨小梁厚度、骨小梁数量和骨小梁面积(%)降低,以及骨小梁间距增加。缺锰组成骨细胞最显著的超微结构改变包括核膜和线粒体外膜破裂、线粒体嵴丢失以及内质网改变。同样,锰缺乏导致OPG和RANKL的相对mRNA表达水平显著降低(P<0.05),而RANKL/OPG比值显著升高(P<0.05)。总之,锰缺乏会影响肉鸡胫骨的发育,导致干骺端骨质疏松,这可能是由于OPG/RANKL mRNA表达降低所致。