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Genetic Diversity of Hydro Priming Effects on Rice Seed Emergence and Subsequent Growth under Different Moisture Conditions

机译:不同水分条件下水稻种子出苗和随后生长的遗传多样性

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摘要

Seed priming refers to seed enhancement methods that stimulate seed metabolism. This study evaluated the genetic diversity of hydro priming efficacy in 27 different genotypes of rice under dry to wet soil moisture conditions. The genotypes included 21 genotypes of Oryza sativa, five genotypes of Oryza glaberrima, and one genotype of NERICA (New Rice for Africa). The treated rice seeds were sown in plastic boxes under four soil moisture conditions (5%, 10%, 15%, and 20% (w/w)). The genotypes were categorized into six groups based on growth parameters using hierarchical cluster analysis. Furthermore, emergence properties were investigated by using principal component analysis based on the mean emergence time of control and primed seeds. Seed priming enhanced growth performance under the moderate dry conditions of 10% and 15% soil moisture. Meanwhile, priming efficacy was low in water stress conditions of 5% and 20% soil moisture. There were wide-ranging genotypic differences of priming efficacy under 20% soil moisture condition. Our findings indicate that the anaerobic-tolerant genotypes tend to exhibit priming efficacy under high soil moisture conditions. Furthermore, one group included all upland genotypes of Oryza sativa. This group originally adapted to 10% and 15% of dry conditions, and seed priming improved their features greatly.
机译:种子引发是指刺激种子代谢的种子增强方法。该研究评估了在干燥的27种不同基因型中的水力引发疗效的遗传多样性在干燥到湿土壤水分条件下。基因型包括21种菊属苜蓿的基因型,羚羊五种基因型,以及Nerica(非洲新米)的一个基因型。处理过的水稻种子在四种土壤水分条件下播种(5%,10%,15%和20%(w / w))。基于使用分层聚类分析的生长参数将基因型分为六组。此外,通过基于对照和灌注种子的平均成分分析使用主成分分析来研究出苗特性。种子引发增强了10%和15%土壤水分的中等干燥条件下的生长性能。同时,水胁迫条件下的灌注效率低5%和20%的土壤水分。在20%土壤水分状况下引发功效的宽范围基因型差异。我们的研究结果表明,耐厌氧耐受性基因型在高土壤水分条件下倾向于表现出灌注效果。此外,一组包括Oryza Sativa的所有Upland基因型。该集团最初适应干燥条件的10%和15%,种子引发大大提高了它们的特征。

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