Li Jin-Yao, Ma Ji, Cai Lun, Zeng You-Ling, Mei Xin-Di, Zhang Fu-Chun
Key Laboratory of Molecular Biology, College of Life Science and Technology, Xinjiang University, Xinjiang Key Laboratory of Biological Resources and Genetic Engineering, Urumqi 830046, China.
Sheng Wu Gong Cheng Xue Bao. 2003 Sep;19(5):628-31.
The United Nations Environment Program estimates that approximately 20% of agricultural land and 50% of cropland in the world is salt-stressed. The gene NHX (Na+/H+ exchanger) encodes functional protein that catalyzes the countertransport of Na+ and H+ across membranes and may play an important role in plant salt tolerance. To clone the NHX from the wild plant Populus euphratica collected in Tarim basin and Xinjiang Wujiaqu district into a T-vector, designed primer was used to amplify 1kb NHX cDNA fragment with RT-PCR. Total RNA was extracted from Populus euphratica tissue (plant tissue was collected from Tarim basin and Xinjiang Wujiaqu district and stored in liquid nitrogen) according to the Plant RNA Mini Kits of Omega. First cDNAs were synthesized from 1 microg total RNA of Populus euphratica seedling. A pair of primers were used to perform RT-PCR. The amplified DNA fragment was purified and cloned into pMD18-T vector. However, 1kb and 2.3kb fragment were obtained from Tarim basin and Xinjiang Wujiaqu district and named as PtNHX and PwNHX, respectively. Sequence analysis reveals that the cloned PtNHX fragment of Populus euphratica contains partial NHX coding region with 98%, 86%, 84% and 80% identity comparing with Atriplex gemelini, Suaeda maritima, Arabidopsis thaliana and Oryza sativa, respectively. This analysis suggests that NHX gene would be highly conserved in terms of evolution in plant; and it also suggests that the NHX gene of Populus euphratica also would have the similarity with that of Arabidopsis. It may be of great importance in improvement of the plant salt tolerance and breed of crop. At the same time, sequence analysis shows that PwNHX gene includes a coding region about 1350bp with 99% identity comparing with transposon Tn10 IS10-left transposase of Shigella flexneri. On the one hand, the NHX gene may lose its function because it was inserted a fragment in coding region. On the other hand, its product may play a important role in salt tolerance. Populus grow in saline soil. It speculates that it may have other salt tolerance mechanism in Populus. The transposon can be used as transposon tagging to clone other genes and it will help us to understand farther the salt tolerance mechanism.
联合国环境规划署估计,世界上约20%的农业用地和50%的耕地受到盐胁迫。NHX(钠/氢交换体)基因编码催化钠和氢跨膜反向运输的功能蛋白,可能在植物耐盐性中发挥重要作用。为了将从塔里木盆地和新疆五家渠地区采集的野生胡杨中的NHX克隆到T载体中,使用设计的引物通过RT-PCR扩增1kb的NHX cDNA片段。根据Omega的植物RNA小提试剂盒从胡杨组织(植物组织从塔里木盆地和新疆五家渠地区采集并保存在液氮中)中提取总RNA。从1μg胡杨幼苗总RNA合成第一链cDNA。使用一对引物进行RT-PCR。将扩增的DNA片段纯化并克隆到pMD18-T载体中。然而,从塔里木盆地和新疆五家渠地区分别获得了1kb和2.3kb的片段,分别命名为PtNHX和PwNHX。序列分析表明,克隆的胡杨PtNHX片段包含部分NHX编码区,与双子叶滨藜、盐地碱蓬、拟南芥和水稻的同源性分别为98%、86%、84%和80%。该分析表明,NHX基因在植物进化方面高度保守;这也表明胡杨的NHX基因与拟南芥的NHX基因也具有相似性。它可能在提高植物耐盐性和作物育种方面具有重要意义。同时,序列分析表明,PwNHX基因包含一个约1350bp的编码区,与弗氏志贺菌转座子Tn10 IS10-左转座酶的同源性为99%。一方面,NHX基因可能因在编码区插入一个片段而失去功能。另一方面,其产物可能在耐盐性中发挥重要作用。胡杨生长在盐碱地。推测胡杨可能还有其他耐盐机制。该转座子可作为转座子标签来克隆其他基因,这将有助于我们进一步了解耐盐机制。