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QTL mapping of physiological traits associated with salt tolerance in Medicago truncatula Recombinant Inbred Lines

机译:紫花苜蓿重组自交系与耐盐性相关的生理性状的QTL定位

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In this study, QTL mapping of physiological traits in the model Legume (Medicago truncatula) was performed using a set of RILs derived from LR5. Twelve parameters associated with Na + and K + content in leaves, stems and roots were measured. Broad-sense heritability of these traits was ranged from 0.15 to 0.83 in control and from 0.14 to 0.61 in salt stress. Variation among RILs was dependent on line, treatment and line by treatment effect. We mapped 6 QTLs in control, 2 in salt stress and 5 for sensitivity index. No major QTL was identified indicating that tolerance to salt stress is governed by several genes with low effects. Detected QTL for leaf, stem and root traits did not share the same map locations, suggesting that genes controlling transport of Na + and K + may be different. The maximum of QTL was observed on chromosome 1, no QTL was detected on chromosomes 5 and 6.
机译:在这项研究中,使用一组源自LR5的RIL对豆类(Medicago truncatula)模型中的生理特性进行QTL定位。测量了与叶片,茎和根中Na +和K +含量相关的十二个参数。这些性状的广义遗传力在对照中为0.15至0.83,在盐胁迫中为0.14至0.61。 RIL之间的差异取决于品系,治疗和品系效应。我们在对照中绘制了6个QTL,在盐胁迫中绘制了2个,对敏感性指数绘制了5个。没有鉴定出主要的QTL,表明对盐胁迫的耐受性是由几个影响较小的基因控制的。检测到的叶,茎和根性状的QTL没有相同的图谱位置,这表明控制Na +和K +转运的基因可能不同。在1号染色体上观察到最大的QTL,在5号和6号染色体上未检测到QTL。

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