Center for Biotechnology Research and Education, Langston University, P.O. Box 1730, Langston, OK 73050, USA.
Biol Proced Online. 2009 Dec 24;12:44-55. doi: 10.1007/s12575-009-9022-z. eCollection 2010.
Subtraction technique has been broadly applied for target gene discovery. However, most current protocols apply relative differential subtraction and result in great amount clone mixtures of unique and differentially expressed genes. This makes it more difficult to identify unique or target-orientated expressed genes. In this study, we developed a novel method for subtraction at mRNA level by integrating magnetic particle technology into driver preparation and tester-driver hybridization to facilitate uniquely expressed gene discovery between peanut immature pod and leaf through a single round subtraction. The resulting target clones were further validated through polymerase chain reaction screening using peanut immature pod and leaf cDNA libraries as templates. This study has resulted in identifying several genes expressed uniquely in immature peanut pod. These target genes can be used for future peanut functional genome and genetic engineering research.
减法技术已被广泛应用于靶基因的发现。然而,目前大多数的方法采用相对差异减法,导致独特的和差异表达基因的克隆混合物大量出现。这使得鉴定独特的或靶向表达的基因更加困难。在这项研究中,我们通过将磁珠技术整合到驱动子制备和测试子-驱动子杂交中,开发了一种新的 mRNA 水平的减法方法,通过单轮减法来促进花生幼荚和叶片之间的独特表达基因的发现。通过使用花生幼荚和叶片 cDNA 文库作为模板进行聚合酶链反应筛选,进一步验证了所得的靶克隆。这项研究已经鉴定了一些在花生幼荚中特异表达的基因。这些靶基因可用于未来的花生功能基因组和遗传工程研究。