首页> 外文期刊>Pakistan journal of botany >QTL mapping of plant height, spike length, peduncle length and number of grains per plant in barley (Hordeum vulgare L.) using ‘Steptoe/Morex’ DH population grown in northwest of China
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QTL mapping of plant height, spike length, peduncle length and number of grains per plant in barley (Hordeum vulgare L.) using ‘Steptoe/Morex’ DH population grown in northwest of China

机译:QTL型植物高度,尖峰长度,花梗长度和大麦(Hordeum Vulgare L.)的谷物数量(Hordeum Vulgare L.)使用在中国西北部种植的Steptoe / Morex'DH人口

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In the present study, 120 out of 150 barley double haploid lines, obtained by crossing ‘Steptoe’ x ‘Morex’, were screened for the 4 traits including plant height, peduncle length, spike length and grains plant -1 , during three crop years in the area of Northwestern China. Quantitative trait loci (QTL) mapping was performed from the available genotype datasets using the 4.1Version of QTL IciMapping. In total, 15 QTLs were mapped on six linkage groups (1H, 2H, 3H, 4H, 5H and 7H) which explained 5.42% to 47.27% phenotypic variation. Four QTLs were recognized in three years for plant height including two QTLs of major impact, one on chromosome 2H in 2014-15 and 2015-16, and the other was detected only in 2016-17 on chromosome 4. While for spike length, four QTLs were found. Six QTLs were identified underlying the trait peduncle length with three major QTLs, two on chromosome 2H in 2015-16 and 2016-17, and one on 3H in 2014-15 and 2015-16. One major QTL for the trait grains plant -1 was identified in 2015-16. Our study could lay the foundation for the fine mapping of agronomic traits studied and could increase the efficiency of marker assisted selection (MAS) in barley breeding programs aiming at improvement of these traits.
机译:在本研究中,通过穿过'STEPTOE'X'MOREX'获得的150个大麦片双倍单倍体线中的120条用于4个特征,包括植物高度,花梗长度,穗长度和谷物植物 - 1,在三个作物期间在中国西北地区。使用QTL ICIMAPPAPT的4.1Version从可用的基因型数据集执行定量特性基因座(QTL)映射。总共,在六个连杆基团(1H,2H,3H,4H,5H和7H)上映射了15个QTL,其解释了5.42%至47.27%的表型变异。四个QTL在三年内被认可为植物高度,包括两个主要影响的QTL,2014-15和2015-16的染色体2小时,而另一个在2016-17在染色体4中检测到另外4.同时飙升,四个发现了QTL。六QTL在2015-16和2016-17中的三个主要QTLS,两种主要QTLS,两种主要QTL,2014-15和2015-16,以及2015年至2015-16中的三个主要QTL。 Trait谷物植物-1的一个主要QTL在2015-16中确定。我们的研究可以为研究的农艺性状的精细映射奠定基础,可以提高旨在改善这些特征的大麦育种计划中标记辅助选择(MAS)的效率。

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