...
首页> 外文期刊>Journal of Experimental Botany >Cloning and functional comparison of a high-affinity K+ transporter gene PhaHKT1 of salt-tolerant and salt-sensitive reed plants
【24h】

Cloning and functional comparison of a high-affinity K+ transporter gene PhaHKT1 of salt-tolerant and salt-sensitive reed plants

机译:耐盐和盐敏感芦苇植物高亲和力K + 转运蛋白基因PhaHKT1的克隆及功能比较

获取原文
获取原文并翻译 | 示例

摘要

To understand the mechanisms of ion homeostasis in salt-tolerant and salt-sensitive plants, cDNAs for a high-affinity K+ transporter PhaHKT1 were isolated from salt-sensitive (Utsunomiya) and salt-tolerant (Nanpi, Enchi) reed plants. A cDNA of Utsunomiya (PhaHKT1-u) contained two insertions in the region corresponding to the first and second introns of the PhaHKT1 gene, which resulted in a sequence 141 amino acid residues shorter than that of Nanpi. Expression of PhaHKT1 mRNA was detected in the roots of Nanpi and Enchi plants under K+ starvation conditions and also under Na+ treatment conditions, whereas it was only slightly detected in the roots of Utsunomiya plants under each of these conditions. In the upper parts, PhaHKT1 expression was detected in the Utsunomiya plants, and two signals were obtained in the Nanpi and Enchi plants under all and K+ starvation conditions, respectively. Yeasts expressing the PhaHKT1 of Nanpi (PhaHKT1-n) or the PhaHKT1 of Enchi (PhaHKT1-e) grew better in the presence of NaCl than yeast expressing PhaHKT1-u. Furthermore, yeast expressing a chimeric cDNA containing the 5′ region of the Utsunomiya gene and the 3′ region of the Nanpi gene had partial salt tolerance, and yeast expressing a chimeric cDNA containing the 5′ region of the Nanpi gene and the 3′ region of the Utsunomiya gene had a reduced ability to take up ions. These results suggest that PhaHKT1 plays an important role in the acquisition of K+ and maintenance of ion balance under saline conditions.
机译:为了了解耐盐和盐敏感植物中离子稳态的机制,从耐盐(Utsunomiya)和耐盐(Nanpi,盐沼)分离了高亲和力K + 转运蛋白PhaHKT1的cDNA。恩奇)芦苇植物。宇都宫的cDNA(PhaHKT1-u)在与PhaHKT1基因的第一个和第二个内含子相对应的区域中包含两个插入,这导致比Nanpi短141个氨基酸残基的序列。在K + 饥饿条件下和Na + 处理条件下,南皮和恩奇植株的根部均检测到PhaHKT1 mRNA的表达,而在根部仅检测到少量PhaHKT1 mRNA的表达。每个条件下的宇都宫工厂。在上部,在宇都宫植株中检测到PhaHKT1表达,分别在所有饥饿和K + 饥饿条件下,在Nanpi和Enchi植物中获得两个信号。在NaCl存在下,表达Nanpi的PhaHKT1(PhaHKT1-n)或Enchi的PhaHKT1(PhaHKT1-e)的酵母比表达PhaHKT1-u的酵母生长更好。此外,表达含有宇都宫基因的5'区域和Nanpi基因的3'区域的嵌合cDNA的酵母具有部分耐盐性,表达含有Nanpi基因的5'区域和3'区域的嵌合cDNA的酵母具有部分耐盐性。宇都宫基因的一部分吸收离子的能力降低。这些结果表明,PhaHKT1在盐分条件下获得K + 和维持离子平衡中起着重要作用。

著录项

  • 来源
    《Journal of Experimental Botany》 |2007年第16期|4387-4395|共9页
  • 作者单位

    Asian Natural Environmental Science Center (ANESC) The University of Tokyo 1-1-1 Midori-cho Nishitokyo-shi Tokyo 188-0002 Japan;

    Alkali Soil Natural Environmental Science Center (ASNESC) Northeast Forestry University Harbin 150040 PR China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号