首页> 外文期刊>Journal of Experimental Botany >Comparative mapping of HKT genes in wheat, barley, and rice, key determinants of Na super(+) transport, and salt tolerance
【24h】

Comparative mapping of HKT genes in wheat, barley, and rice, key determinants of Na super(+) transport, and salt tolerance

机译:小麦,大麦和水稻中HKT基因的作图比较,Na super(+)转运的关键决定因素和耐盐性

获取原文
获取原文并翻译 | 示例
           

摘要

Salt tolerance of plants depends on HKT transporters (High-affinity K super(+) Transporter), which mediate Na super(+)-specific transport or Na super(+)-K super(+) co-transport. Gene sequences closely related to rice HKT genes were isolated from hexaploid bread wheat (Triticum aestivum) or barley (Hordeum vulgare) for genomic DNA southern hybridization analysis. HKT gene sequences were mapped on chromosomal arms of wheat and barley using wheat chromosome substitution lines and barley-wheat chromosome addition lines. In addition, HKT gene members in the wild diploid wheat ancestors, T. monococcum (A super(m) genome), T. urartu (A super(u) genome), and Ae. tauschii (D super(t) genome) were investigated. Variation in copy number for individual HKT gene members was observed between the barley, wheat, and rice genomes, and between the different wheat genomes. HKT2; 1/2-like, HKT2; 3/4-like, HKT1; 1/2-like, HKT1; 3-like, HKT1; 4-like, and HKT1; 5-like genes were mapped to the wheat-barley chromosome groups 7, 7, 2, 6, 2, and 4, respectively. Chromosomal regions containing HKT genes were syntenic between wheat and rice except for the chromosome regions containing the HKT1; 5-like gene. Potential roles of HKT genes in Na super(+) transport in rice, wheat, and barley are discussed. Determination of the chromosome locations of HKT genes provides a framework for future physiological and genetic studies investigating the relationships between HKT genes and salt tolerance in wheat and barley.
机译:植物的耐盐性取决于HKT转运蛋白(高亲和力K super(+)转运蛋白),其介导Na super(+)特异性转运或Na super(+)-K super(+)共转运。从六倍体面包小麦(Triticum aestivum)或大麦(Hordeum vulgare)中分离与水稻HKT基因密切相关的基因序列,以进行基因组DNA Southern杂交分析。使用小麦染色体替代品系和大麦-小麦染色体添加品系,将HKT基因序列定位在小麦和大麦的染色体臂上。此外,在野生二倍体小麦祖先,单核球菌(A super(m)基因组),乌拉氏球菌(A super(u)基因组)和Ae中的HKT基因成员。研究了tauschii(D super(t)基因组)。在大麦,小麦和水稻基因组之间以及不同小麦基因组之间观察到单个HKT基因成员的拷贝数变化。 HKT2; 1/2类,HKT2; 3/4样,HKT1; 1/2类,HKT1; 3类,HKT1;类似4和HKT1; 5样基因分别定位到小麦-大麦染色体组7、7、2、6、2和4。除含有HKT1的染色体区域外,含有HKT基因的染色体区域在小麦和水稻之间具有同义关系。 5样基因。讨论了HKT基因在水稻,小麦和大麦中Na super(+)转运中的潜在作用。 HKT基因染色体位置的确定为将来的生理和遗传研究提供了框架,以研究HKT基因与小麦和大麦耐盐性之间的关系。

著录项

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