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Identification of QTLs for yield and yield components of barley under different growth conditions

机译:确定不同生长条件下大麦产量和产量构成的QTL

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摘要

Waterlogging is a major abiotic stress limiting barley (Hordeum vulgare L.) yield and its stability in areas with excessive rainfall. Identification of genomic regions influencing the response of yield and its components to waterlogging stress will enhance our understanding of the genetics of waterlogging tolerance and the development of more tolerant barley cultivars. Quantitative trait loci (QTLs) for grain yield and its components were identified using 156 doubled haploid (DH) lines derived from a cross between the cultivars Yerong (waterlogging-tolerant) and Franklin (waterlogging-sensitive) grown under different conditions (waterlogged and well drained). A total of 31 QTLs were identified for the measured characters from two experiments with two growth environments. The phenotypic variation explained by individual QTLs ranged from 4.74% to 55.34%. Several major QTLs determining kernel weight (KW), grains per spike (GS), spikes per plant (SP), spike length (SL) and grain yield (GY) were detected on the same region of chromosome 2H, indicating close linkage or pleiotropy of the gene(s) controlling these traits. Some different QTLs were identified under waterlogging conditions, and thus different markers may have to be used in selecting cultivars suitable for high rainfall areas.
机译:涝渍是限制非生物胁迫的大麦(Hordeum vulgare L.)的主要产量,在大雨量地区稳定。鉴定影响产量及其组分对涝渍胁迫响应的基因组区域,将增进我们对涝渍耐受性的遗传学和更宽容的大麦品种的发展的了解。使用156种双倍单倍体(DH)系鉴定了粮食产量及其组成的数量性状位点(DHTL),这些系来自在不同条件下(涝渍和良性生长)的品种Yerong(耐涝)和Franklin(耐涝)耗尽)。在两个具有两种生长环境的实验中,共鉴定出31个QTL用于测得的性状。由单个QTL解释的表型变异范围为4.74%至55.34%。在2H染色体的同一区域检测到几个主要的QTL,这些QTL确定了籽粒重量(KW),每穗粒数(GS),每株穗粒数(SP),穗长(SL)和籽粒产量(GY),表明紧密连锁或多效性控制这些性状的基因。在淹水条件下鉴定出一些不同的QTL,因此在选择适合高降雨地区的品种时可能需要使用不同的标记。

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