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Diversity of germination and seedling traits in a spring barley (Hordeum vulgare L.) collection under drought simulated conditions

机译:干旱模拟条件下春季大麦(Hordeum vulgare L.)集合中发芽和幼苗性状的多样性

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This research evaluated the genotypic variation in a diverse set of 233 barley genotypes including 57 landraces in the context of early drought tolerance using polyethylene glycol-(PEG) induced osmotic stress on germinating seeds. The effect of PEG treatment ranged from accelerating to delaying the germination rate. PEG showed inhibitory effects on all seedling traits. Expressions of root and shoot traits recorded under optimum and under PEG-induced drought stress were positively and significantly correlated. Combined analysis of variance over experiments and treatments showed intermediate to high broad sense heritability values ranging from 0.42 to 0.76 for germination rate and seedling traits. Higher heritability values were obtained under optimum conditions as compared to PEG-induced drought stress conditions, indicating that the selection for genotypes with a more vigorous root system would be more efficient under optimum conditions. The extensive genetic variation for root morphology-related traits found in this diverse collection opens the opportunity to further investigate the analyzed root traits as selection criteria to improve barley performance under drought stress and to reveal the genetic basis for the observed stress tolerance by a genome-wide association study.
机译:这项研究使用聚乙二醇-(PEG)诱导的发芽种子渗透胁迫,在早期耐旱性背景下评估了233种大麦基因型,包括57个地方品种的基因型变异。 PEG处理的效果从加速到延迟发芽率不等。 PEG显示出对所有幼苗性状的抑制作用。在最佳和PEG诱导的干旱胁迫下记录的根和芽性状的表达正相关且显着相关。实验和处理方法的综合方差分析表明,发芽率和幼苗性状的中等至较高的广义遗传力值在0.42至0.76之间。与PEG诱导的干旱胁迫条件相比,在最佳条件下可获得更高的遗传力值,这表明在最佳条件下选择具有更强壮根系的基因型更为有效。在这个多样化的集合中发现的与根系形态相关性状的广泛遗传变异,为进一步研究分析的根系性状提供了机会,以作为选择标准,以提高大麦在干旱胁迫下的表现,并揭示基因组观察到的胁迫耐受性的遗传基础,广泛的关联研究。

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