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Mapping QTLs conferring salt tolerance and micronutrient concentrations at seedling stagein wheat

机译:定位小麦幼苗期耐盐性和微量营养元素含量的QTL定位

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Soil salinization and degradation is one of the consequences of climate change. Identification of major salt tolerance genes and marker assisted selection (MAS) can accelerate wheat breeding for this trait. We genotyped 154 wheat F2 lines derived from a cross between salt tolerant and susceptible cultivars using the Axiom Wheat Breeder’s Genotyping Array. A high-density linkage map of 988 single nucleotide polymorphisms (SNPs) was constructed and utilized for quantitative trait loci (QTL) mapping for salt tolerance traits and mineral concentrations under salinity. Of 49 mapped QTLs, six were for Na+ exclusion (NAX) and two QTLs (qSNAX.2?A.1, qSNAX.2?A.2) on chromosome 2?A coincided with a reported major NAX QTL (Nax1 or HKT1;4). Two other major NAX QTLs were mapped on 7?A, which contributed 11.23 and 18.79% of the salt tolerance respectively. In addition to Ca+2 and Mg+2 QTLs, twenty-seven QTLs for tissue Phosphorus, Zinc, Iron, Manganese, Copper, Sulphur and Boron concentrations under salinity were also mapped. The 1293 segregating SNPs were annotated/located within genes for various ion channels, signalling pathways, transcription factors (TFs), metabolic pathways and 258 of them showed differential expression in silico under salinity. These findings will create new opportunities for salt tolerance breeding programs.
机译:土壤盐碱化和退化是气候变化的后果之一。鉴定主要的耐盐基因和标记辅助选择(MAS)可以加速该特性的小麦育种。我们使用Axiom小麦育种者的基因分型阵列对154个小麦F2品系进行了基因分型,这些品系来自耐盐和易感品种之间的杂交。构建了988个单核苷酸多态性(SNPs)的高密度连锁图谱,并将其用于盐度下的耐盐性状和矿物质浓度的定量性状基因座(QTL)作图。在49个定位的QTL中,有6个是针对Na +排除(NAX)的,两个是位于2号染色体A上的QTL(qSNAX.2?A.1,qSNAX.2?A.2),与报告的主要NAX QTL(Nax1或HKT1; 4)。另外两个主要的NAX QTL位于7?A上,分别贡献了11.23%和18.79%的耐盐性。除了Ca + 2和Mg + 2 QTL外,还绘制了盐度下组织磷,锌,铁,锰,铜,硫和硼的27个QTL。将1293个分离的SNP注释/定位在各种离子通道,信号传导途径,转录因子(TF),代谢途径的基因中,其中258种在盐度下在计算机中显示差异表达。这些发现将为耐盐育种计划创造新的机会。

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