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首页> 外文期刊>Australian Journal of Crop Science >The effects of a QTL for root development under hypoxia on yield of soybean exposed to 7-day waterlogging at seedling stage
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The effects of a QTL for root development under hypoxia on yield of soybean exposed to 7-day waterlogging at seedling stage

机译:QTL在缺氧下对大豆产量下的QTL对大豆产量的影响暴露于7天的幼苗阶段涝渍

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In humid parts of the world, waterlogging is a major environmental stress limiting the yield of soybean and its root development is an important indicator of tolerance.Recently, quantitative trait loci (QTLs) for this trait were detected on the chromosome 12 of soybean through the analyses of recombinant inbred lines (RILs) developed from a cross between a hypoxia-sensitive cultivar, Tachinagaha, and a tolerant landrace, Iyodaizu.In this study, in order to get a detailed understanding of these QTLs, NIL-9-4-5, a near-isogenic line (NIL), was selected from Tachinagaha/Iyodaizu BC6F2 population through marker assisted selection (MAS).NIL-9-4-5 was then tested for yield performance under waterlogging conditions exposed at the seedling stage.The test was conducted in a greenhouse in 2015 and 2018 at the Experimental Farm of Kyushu University, Fukuoka, Japan.Soybean plants were grown in pots containing loam soil.From six days after germination, seedlings were grown for 7 days under two treatments: drained (control) and waterlogging conditions.Pots were kept in containers where the water level was maintained at 2.0 cm depth from bottom in the control and at 2.0 cm above the soil surface in waterlogged condition.Experimental results consistently showed that seed yields of both Iyodaizu and NIL-9-4-5 were not reduced under waterlogging.Compared to Tachinagaha, NIL-9-4-5 showed higher root development and increased seed yield under waterlogging.These indicate that the tested QTLs are able to increase yield by stimulating root development under waterlogging.
机译:在世界的潮湿地区,Waterlogging是一种主要的环境压力,限制大豆的产量,其根系发育​​是耐受性的重要指标。在大豆的12个染色体上检测到这种特征的定量性状基因座(QTLS)。从缺氧敏感品种,Tachinagaha和宽容的Landrace,Iyodaizu.in之间产生的重组自交系(rils)的分析。在本研究中,为了详细了解这些QTL,NIL-9-4-5 ,近代线(NIL),通过标记辅助选择(MAS),从Tachinagaha / Iyodaizu BC6F2种群中选择,然后在幼苗阶段暴露的落水条件下进行NIL-9-4-5进行。测试在2015年和2018年进行了温室,在九州大学的实验农场,福冈,日本福冈植物生长在含有泥土土壤的盆中。从萌芽后六天,幼苗在两次Trea下生长7天作者:排出(控制)和涝渍条件。将水位从对照中的底部保持在2.0cm深度的容器中,并在水涝条件下在土壤表面上方2.0厘米。实验结果一致地显示出种子产量Iyodaizu和Nil-9-4-5在waterlogging下没有减少。对于Tachinagaha,Nil-9-4-5显示出较高的根部发育和涝渍的种子产量增加。这些表明测试的QTL能够增加产量在涝渍下刺激根系发展。

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