Joshi C P, Nguyen H T
Department of Plant and Soil Science, Texas Tech University, Lubbock 79409-2122, USA.
Plant Mol Biol. 1996 Jun;31(3):575-84. doi: 10.1007/BF00042230.
Isolation of cDNAs encoding individual members of a gene family is essential for assessing their role in a biological phenomenon. However, this process is often laborious and slow due to highly conserved protein-coding region that interferes with the isolation of the individual members. Identification of gene-specific probes from 3' non-coding regions of different members can assist in the fast retrieval and characterization of individual members of a multigene family. We used the recent technique of differential display for the same purpose. As an example of a multigene family in plants, we selected a heat shock protein gene family, HSP16.9 from wheat, with estimated 12 members. We modified the original differential display technique for selective amplification of the 3' non-coding regions of different wheat HSP16.9 genes by replacing the random 10-mer in the original method with a conserved HSP16.9 gene family-specific primer. Sixteen cDNA fragments from these experiments were sequenced and they represent 8 different members of a 12 member gene family. Our success can be attributed to shorter 3' non-coding regions that are typical of higher-plant genes and use of highly conserved gene family-specific primer in these experiments. This modified differential display technique can be of general application to other plant systems where cloning of the different members of a gene family is desired.
分离编码基因家族单个成员的cDNA对于评估它们在生物现象中的作用至关重要。然而,由于高度保守的蛋白质编码区域会干扰单个成员的分离,这个过程通常既费力又缓慢。从不同成员的3'非编码区鉴定基因特异性探针有助于快速检索和鉴定多基因家族的单个成员。我们使用差异显示这一最新技术来达到同样目的。作为植物多基因家族的一个例子,我们选择了来自小麦的热休克蛋白基因家族HSP16.9,估计有12个成员。我们通过用保守的HSP16.9基因家族特异性引物替换原始方法中的随机10聚体,对原始差异显示技术进行了改进,以选择性扩增不同小麦HSP16.9基因的3'非编码区。对这些实验得到的16个cDNA片段进行了测序,它们代表了一个12成员基因家族中的8个不同成员。我们的成功可归因于高等植物基因典型的较短3'非编码区以及在这些实验中使用了高度保守的基因家族特异性引物。这种改进的差异显示技术可普遍应用于其他需要克隆基因家族不同成员的植物系统。