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A SOS3 homologue maps to HvNax4, a barley locus controlling an environmentally sensitive Na+ exclusion trait

机译:sOs3同源物定位于HvNax4,一种控制环境敏感Na +排斥性状的大麦基因座

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摘要

Genes that enable crops to limit Na+ accumulation in shoot tissues represent potential sources of salinity tolerance for breeding. In barley, the HvNax4 locus lowered shoot Na+ content by between 12% and 59% (g−1 DW), or not at all, depending on the growth conditions in hydroponics and a range of soil types, indicating a strong influence of environment on expression. HvNax4 was fine-mapped on the long arm of barley chromosome 1H. Corresponding intervals of ∼200 kb, containing a total of 34 predicted genes, were defined in the sequenced rice and Brachypodium genomes. HvCBL4, a close barley homologue of the SOS3 salinity tolerance gene of Arabidopsis, co-segregated with HvNax4. No difference in HvCBL4 mRNA expression was detected between the mapping parents. However, genomic and cDNA sequences of the HvCBL4 alleles were obtained, revealing a single Ala111Thr amino acid substitution difference in the encoded proteins. The known crystal structure of SOS3 was used as a template to obtain molecular models of the barley proteins, resulting in structures very similar to that of SOS3. The position in SOS3 corresponding to the barley substitution does not participate directly in Ca2+ binding, post-translational modifications or interaction with the SOS2 signalling partner. However, Thr111 but not Ala111 forms a predicted hydrogen bond with a neighbouring α-helix, which has potential implications for the overall structure and function of the barley protein. HvCBL4 therefore represents a candidate for HvNax4 that warrants further investigation.
机译:使作物能够限制芽组织中Na +积累的基因代表了耐盐性育种的潜在来源。在大麦中,取决于水培法的生长条件和土壤类型范围的不同,HvNax4基因座将芽的Na +含量降低12%至59%(g-1 DW)之间或根本不降低,表明环境对土壤的强烈影响表达。 HvNax4精细映射在大麦1H号染色体的长臂上。在测序的水稻和腕足动物基因组中定义了约200 kb的相应间隔,总共包含34个预测基因。 HvCBL4是拟南芥SOS3耐盐性基因的大麦同源基因,与HvNax4共分离。在作图亲本之间未检测到HvCBL4 mRNA表达的差异。但是,获得了HvCBL4等位基因的基因组和cDNA序列,揭示了编码蛋白中一个单一的Ala111Thr氨基酸取代差异。 SOS3的已知晶体结构被用作模板,以获得大麦蛋白的分子模型,其结构与SOS3非常相似。 SOS3中与大麦取代对应的位置不直接参与Ca2 +结合,翻译后修饰或与SOS2信号伴侣的相互作用。但是,Thr111而不是Ala111与相邻的α-螺旋形成一个预测的氢键,这对大麦蛋白的整体结构和功能具有潜在的影响。因此,HvCBL4代表HvNax4的候选人,值得进一步研究。

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