Yao Jian Hong, Zhao Xiu Yun, Liao Zhi Hua, Lin Juan, Chen Zhong Hai, Chen Fei, Song Jun, Sun Xiao Fen, Tang Ke Xuan
State Key Laboratory of Genetic Engineering, School of Life Sciences, Morgan-Tan International Center for Life Sciences, Fudan-SJTU-Nottingham Plant Biotechnology R and D Center, Fudan University, Shanghai 200433, China.
Cell Res. 2003 Aug;13(4):301-8. doi: 10.1038/sj.cr.7290175.
The full-length cDNA of Pinellia ternata agglutinin (PTA) was cloned from inflorescences using RACE-PCR. Through comparative analysis of PTA gene (pta) and its deduced amino acid sequence with those of other Araceae species, pta was found to encode a precursor lectin with signal peptide and to have extensive homology with those of other Araceae species. PTA was a heterotetrameric mannose-binding lectin with three mannose-binding boxes like lectins from other Araceae and Amaryllidaceae species. Southern blot analysis of the genomic DNA revealed that pta belonged to a low-copy gene family. Northern blot analysis demonstrated that pta constitutively expressed in various plant tissues including root, leaf, stem and inflorescence. The pta cDNA sequence encoding for mature PTA protein was cloned into pET-32a plasmid and the resulting plasmid, pET-32a-PTA containing Trx-PTA fusion protein, was investigated for the expression in E. coli BL21. SDS-PAGE gel analysis showed that the Trx-PTA fusion protein was successfully expressed in E. coli BL21 when induced by IPTG. Artificial diet assay revealed that PTA fusion protein had significant levels of resistance against peach potato aphids when incorporated into artificial diet at 0.1% (w/v). The cloning of the pta gene will enable us to further test its effect in depth on aphids by transferring the gene into crop plants.
采用RACE-PCR技术从半夏花序中克隆了半夏凝集素(PTA)的全长cDNA。通过对PTA基因(pta)及其推导的氨基酸序列与其他天南星科物种进行比较分析,发现pta编码一种带有信号肽的前体凝集素,并且与其他天南星科物种具有广泛的同源性。PTA是一种异源四聚体甘露糖结合凝集素,与其他天南星科和石蒜科物种的凝集素一样具有三个甘露糖结合框。基因组DNA的Southern杂交分析表明,pta属于一个低拷贝基因家族。Northern杂交分析表明,pta在包括根、叶、茎和花序在内的各种植物组织中组成型表达。将编码成熟PTA蛋白的pta cDNA序列克隆到pET-32a质粒中,并对所得含有Trx-PTA融合蛋白的质粒pET-32a-PTA在大肠杆菌BL21中的表达进行了研究。SDS-PAGE凝胶分析表明,IPTG诱导时,Trx-PTA融合蛋白在大肠杆菌BL21中成功表达。人工饲料试验表明,当PTA融合蛋白以0.1%(w/v)的比例掺入人工饲料中时,对桃蚜具有显著的抗性水平。pta基因的克隆将使我们能够通过将该基因转入作物中,进一步深入测试其对蚜虫的作用。