畜牧兽医学报 ›› 2008, Vol. 39 ›› Issue (10): 1329-1335.doi:

• 遗传繁育 • 上一篇    下一篇

鸡CaBP-D28k基因克隆、序列测定及其真核表达质粒的构建

俞路1,王雅倩1,章世元1*,孙怀昌2,王志跃1,孙龙生1,李燕舞1,李治学1,周联高1,严桂芹1   

  1. 1. 扬州大学动物科学与技术学院,扬州 225009;2. 扬州大学兽医学院,扬州225009
  • 收稿日期:1900-01-01 修回日期:1900-01-01 出版日期:2008-10-24 发布日期:2008-10-24
  • 通讯作者: 章世元

Gene Cloning, Sequencing and Eukaryotic Expression Plasmid Construction of Chicken Calbindin-D28k

YU Lu1, WANG Ya-qian1, ZHANG Shi-yuan1*, SUN Huai-chang2, WANG Zhi-yue1, SUN Long-sheng1, LI Yan-wu1, LI Zhi-xue1, ZHOU Lian-gao1, YAN Gui-qin1   

  1. 1. College of Animal Science and Technology, Yangzhou University, Yangzhou 225009,China;2. College of Veterinary Medicine, Yangzhou University, Yangzhou 225009,China
  • Received:1900-01-01 Revised:1900-01-01 Online:2008-10-24 Published:2008-10-24

摘要: 采集200日龄产蛋新扬州鸡小肠组织直接提取总RNA进行反转录聚合酶链式反应(RT-PCR)扩增,扩增产物进行克隆、测序,获得了新扬州鸡CaBP-D28k基因序列。序列测定表明,CaBP-D28k基因核苷酸长度为789 bp,编码262个氨基酸。与GenBank上发表序列(NM_205513.1)比较,核苷酸同源性为99.9%,在760 bp处存在G→T的错义突变。与从GenBank下载的马、人、小家鼠、蟾蜍序列进行比较分析,核苷酸同源性分别为79.3%、79.1%、77.4%、77.3%。将该基因片段克隆到真核表达载体pCEP4,构建重组质粒pCEP4-CaBP-D28k,所获重组质粒经过酶切、测序鉴定,证实含有目的片段,且连接、构建正确,为利用pCEP4-CaBP-D28k调控蛋禽钙代谢、改善蛋壳质量的研究应用奠定了基础。

Abstract: Total RNA was extracted from small intestine of New Yangzhou laying hens at 200 day of age. RT-PCR was conducted subsequently based on published chicken Calbindin-D28k gene sequence (NM_205513.1). The expected amplified cDNA fragment was cloned into TA vector. Sequence analysis revealed that the cloned Calbindin-D28k gene, encoding 262 amino acids, was 789 bp in length which was 99.9% identity but only one nucleotide changed from G to T at site 760 bp compared with published sequence from GenBank database. The homology of Calbindin-D28k gene sequence between chicken and other species such as horse,human,mouse and frog was 79.3%、79.1%、77.4%、77.3%, respectively. Reconstruction plasmid of pCEP4-CaBP-D28k was carried out by inserting the fragment of CalbindinD28k gene into eukaryotic expression vector pCEP4, and the target segment in recombinant plasmid was characterized and confirmed by restrictive endonuclease assay as well as sequence analysis. This research provide a novel means to study regulation mechanism of calcium metabolism in chickens through pCEP4-CaBP-D28k.