首页> 外文期刊>Journal of Crop Improvement >Yield Potential and Waterlogging Tolerance of Selected Near-Isogenic Lines and Recombinant Inbred Lines from Two Southern Soybean Populations
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Yield Potential and Waterlogging Tolerance of Selected Near-Isogenic Lines and Recombinant Inbred Lines from Two Southern Soybean Populations

机译:从两个南方大豆群中选择近代近代素和重组自交系的产生潜力和涝脂性耐受性

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A quantitative trait locus (QTL) for waterlogging tolerance has been identified in a northern cultivar Archer. In the current study, Archer was crossed with two southern elite soybean cultivars A5403 and P9641 to investigate the efficiency of marker-assisted selection and phenotypic selection for waterlogging tolerance and to assess the value of waterlogging tolerance for soybean yield improvement. Near-isogenic lines (NILs) were created using the linked simple sequence repeat (SSR) marker Sat_064 for the waterlogging tolerance QTL from each of the F_6-derived populations. Concurrently, 103 and 67 recombinant inbrecl lines (RILs) were also generated from Archer x A5403 and Archer x P9641, respectively. Significant variations in seed yield or plant injury were observed among the NILs and RILs under waterlogging stress. The 29 most tolerant and 29 most sensitive NILs and RILs were selected on the basis of waterlogging injury ratings and evaluated under irrigated and waterlogged conditions in Arkansasand Missouri in 2002 and 2003. The most tolerant lines produced an average of 60.9% of their irrigated yield, as compared with only 32.6% and 53.9% by the most sensitive lines and the commercial checks, respectively. Waterlogging injury scores for the tolerant lines, checks, and sensitive lines were 3.6, 4.3, and 6.6, respectively, following the same trend as their yield reductions. A genotype-by-environment interaction (G x E) analysis showed that some of the selected lines were highly stable in response to waterlogging stress across environments. Breeding selection for the waterlogging tolerance can be performed in the field based on seed yield and plant injury scores.
机译:在北方品种弓箭手中已经鉴定了用于涝耐力的定量性状基因座(QTL)。在目前的研究中,弓箭手与两个南方精英大豆品种A5403和P9641交叉,探讨了用于耐水性耐受性的标记辅助选择和表型选择的效率,并评估大豆产量改善的耐水涝耐受性的价值。使用来自每个F_6衍生群体的落水耐受性QTL的链接简单的序列重复(SSR)标记SAT_064来创建近代型线(NIL)。同时,103和67重组inbrecl线(RIL)也分别从Archer X A5403和Archer X P9641生成。在涝脂胁迫下,在尼尔和罗尔斯中观察到种子产量或植物损伤的显着变化。在2002年和2003年在阿肯纳西密苏里州的灌溉和涝渍的基础上选择了29种最耐受性和29个最敏感的尼尔和rils。最具耐受性的系列平均灌溉产量的60.9%,与最敏感的线条和商业检查只有32.6%和53.9%。耐受性线条,检查和敏感线的耐涝损伤分别分别为3.6,4.3和6.6,与其产量减少相同的趋势。基因型 - 乙烯基型相互作用(G X E)分析表明,一些选定的线响应于跨环境的耐水磨损而高度稳定。基于种子产量和植物损伤分数,可以在现场进行浇水耐受性的育种选择。

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