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Variable salinity responses of 12 alfalfa genotypes and comparative expression analyses of salt-response genes

机译:12苜蓿基因型的可变盐度反应和盐反应基因的比较表达分析

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Twelve alfalfa genotypes that were selected for biomass under salinity, differences in Na and Cl concentrations in shoots and K/Na ratio were evaluated in this long-term salinity experiment. The selected plants were cloned to reduce genetic variability within each genotype. Salt tolerance (ST) index of the genotypes ranged from 0.39 to 1. The most salt-tolerant genotypes SISA14-1 (G03) and AZ-90ST (G10), the top performers for biomass, exhibited the least effect on shoot number and height. SISA14-1 (G03) accumulated low Na and Cl under salinity. Most genotypes exhibited a net reduction in shoot Ca, Mg, P, Fe, and Cu, while Mn and Zn increased under salinity. Salinity reduced foliar area and stomatal conductance; while net photosynthetic rate and transpiration were not affected. Interestingly, salinity increased chlorophyll and antioxidant capacity in most genotypes; however neither parameter correlated well to ST index. Salt-tolerant genotypes showed upregulation of the SOS1, SOS2, SOS3, HKT1, AKT1, NHX1, P5CS1, HSP90.7, HSP81.2, HSP71.1, HSPC025, OTS1, SGF29 and SAL1 genes. Gene expression analyses allowed us to classify genotypes based on their ability to regulate different components of the salt tolerance mechanism. Pyramiding different components of the salt tolerance mechanism may lead to superior salt-tolerant alfalfa genotypes.
机译:在这种长期盐度实验中评估了12种针对盐度下为生物质而选择的生物质的基因型,并在该长期盐度实验中评价了Na和Cl浓度和K / Na比的差异。将所选植物克隆以降低每种基因型内的遗传变异性。基因型的耐盐性(ST)指数从0.39到1。最耐盐基因型SisA14-1(GO3)和AZ-90st(G10),用于生物质的顶部表现因素,对射击数和高度的效果最小。 Sisa14-1(G03)累积低Na和Cl在盐度下。大多数基因型表现出芽Ca,Mg,P,Fe和Cu的净减少,而Mn和Zn在盐度下增加。盐度降低叶面区域和气孔电导;虽然净光合速率和蒸腾不受影响。有趣的是,盐度在大多数基因型中增加了叶绿素和抗氧化能力;但是,没有参数与ST索引相关。耐盐基因型显示出SOS1,SOS2,SOS3,HKT1,AKT1,NHX1,P5CS1,HSP90.7,HSP81.2,HSP71.1,HSPC025,OTS1,SGF29和SAL1基因的上调。基因表达分析允许我们根据其调节耐盐机制的不同组分的能力来分类基因型。耐盐机制的径向不同组分可能导致优异的耐盐性苜蓿基因型。

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