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Genomic Regions Influencing Seminal Root Traits in Barley

机译:影响大麦种子根性状的基因组区域

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Water availability is a major limiting factor for crop production, making drought adaptation and its many component traits a desirable attribute of plant cultivars. Previous studies in cereal crops indicate that root traits expressed at early plant developmental stages, such as seminal root angle and root number, are associated with water extraction at different depths. Here, we conducted the first study to map seminal root traits in barley (Hordeum vulgare L.). Using a recently developed high-throughput phenotyping method, a panel of 30 barley genotypes and a doubled-haploid (DH) population (ND24260 × ‘Flagship’) comprising 330 lines genotyped with diversity array technology (DArT) markers were evaluated for seminal root angle (deviation from vertical) and root number under controlled environmental conditions. A high degree of phenotypic variation was observed in the panel of 30 genotypes: 13.5 to 82.2 and 3.6 to 6.9° for root angle and root number, respectively. A similar range was observed in the DH population: 16.4 to 70.5 and 3.6 to 6.5° for root angle and number, respectively. Seven quantitative trait loci (QTL) for seminal root traits (root angle, two QTL; root number, five QTL) were detected in the DH population. A major QTL influencing both root angle and root number (RAQ2/RNQ4) was positioned on chromosome 5HL. Across-species analysis identified 10 common genes underlying root trait QTL in barley, wheat (Triticum aestivum L.), and sorghum [Sorghum bicolor (L.) Moench]. Here, we provide insight into seminal root phenotypes and provide a first look at the genetics controlling these traits in barley.
机译:水分供应是作物生产的主要限制因素,使干旱适应及其许多组成特征成为植物品种的理想属性。先前对谷物作物的研究表明,在植物发育早期表达的根性状,例如精根角和根数,与不同深度的水分提取有关。在这里,我们进行了第一个研究,以绘制大麦(Hordeum vulgare L.)的种子根性状。使用最近开发的高通量表型分析方法,评估了一组具有30个大麦基因型和一个双单倍体(DH)群体(ND24260×'旗舰'),其中包括330个用多样性阵列技术(DArT)标记进行基因分型的品系(偏离垂直方向)和根数在受控环境条件下。在30个基因型的组中观察到高度的表型变异:根角和根数分别为13.5至82.2和3.6至6.9°。在DH群体中观察到了相似的范围:根角和根数分别为16.4至70.5和3.6至6.5°。在DH群体中检测到七个精子根性状的数量性状基因座(QTL)(根角,两个QTL;根数,五个QTL)。影响根角和根数的主要QTL(RAQ2 / RNQ4)位于5HL染色体上。跨物种分析确定了大麦,小麦(Triticum aestivum L.)和高粱[Sorghum bicolor(L.)Moench]根性状QTL的10个常见基因。在这里,我们提供了对精液根表型的深入了解,并初步了解了控制大麦中这些性状的遗传学。

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