Huang Shaobai, Spielmeyer Wolfgang, Lagudah Evans S, James Richard A, Platten J Damien, Dennis Elizabeth S, Munns Rana
CSIRO Plant Industry, Canberra, Australian Capital Territory 2601, Australia.
Plant Physiol. 2006 Dec;142(4):1718-27. doi: 10.1104/pp.106.088864. Epub 2006 Oct 27.
Durum wheat (Triticum turgidum subsp. durum) is more salt sensitive than bread wheat (Triticum aestivum). A novel source of Na(+) exclusion conferring salt tolerance to durum wheat is present in the durum wheat Line 149 derived from Triticum monococcum C68-101, and a quantitative trait locus contributing to low Na(+) concentration in leaf blades, Nax1, mapped to chromosome 2AL. In this study, we used the rice (Oryza sativa) genome sequence and data from the wheat expressed sequence tag deletion bin mapping project to identify markers and construct a high-resolution map of the Nax1 region. Genes on wheat chromosome 2AL and rice chromosome 4L had good overall colinearity, but there was an inversion of a chromosomal segment that includes the Nax1 locus. Two putative sodium transporter genes (TmHKT7) related to OsHKT7 were mapped to chromosome 2AL. One TmHKT7 member (TmHKT7-A1) was polymorphic between the salt-tolerant and -sensitive lines, and cosegregated with Nax1 in the high-resolution mapping family. The other TmHKT7 member (TmHKT7-A2) was located within the same bacterial artificial chromosome contig of approximately 145 kb as TmHKT7-A1. TmHKT7-A1 and -A2 showed 83% amino acid identity. TmHKT7-A2, but not TmHKT7-A1, was expressed in roots and leaf sheaths of the salt-tolerant durum wheat Line 149. The expression pattern of TmHKT7-A2 was consistent with the physiological role of Nax1 in reducing Na(+) concentration in leaf blades by retaining Na(+) in the sheaths. TmHKT7-A2 could control Na(+) unloading from xylem in roots and sheaths.
硬粒小麦(Triticum turgidum subsp. durum)比面包小麦(Triticum aestivum)对盐分更敏感。在源自一粒小麦C68 - 101的硬粒小麦品系149中存在一种赋予硬粒小麦耐盐性的新型钠排斥源,并且一个导致叶片中低钠浓度的数量性状位点Nax1被定位到2AL染色体上。在本研究中,我们利用水稻(Oryza sativa)基因组序列以及来自小麦表达序列标签删除区间作图项目的数据来鉴定标记并构建Nax1区域的高分辨率图谱。小麦2AL染色体和水稻4L染色体上的基因具有良好的整体共线性,但包含Nax1位点的染色体片段存在倒位。两个与OsHKT7相关的假定钠转运蛋白基因(TmHKT7)被定位到2AL染色体上。一个TmHKT7成员(TmHKT7 - A1)在耐盐和盐敏感品系之间存在多态性,并且在高分辨率作图群体中与Nax1共分离。另一个TmHKT7成员(TmHKT7 - A2)与TmHKT7 - A1位于大约145 kb的同一细菌人工染色体重叠群内。TmHKT7 - A1和 - A2显示出83%的氨基酸同一性。TmHKT7 - A2在耐盐硬粒小麦品系149的根和叶鞘中表达,而TmHKT7 - A1不表达。TmHKT7 - A2的表达模式与Nax1通过将钠保留在叶鞘中来降低叶片中钠浓度的生理作用一致。TmHKT7 - A2可以控制根和叶鞘中木质部的钠卸载。