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Temperature effects on seed germination and expression of seed dormancy in wheat

机译:温度对小麦种子萌发和种子休眠表达的影响

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摘要

Because preharvest sprouting decreases quantity and quality of wheat grain, researchers need effective protocols to assess response to preharvest sprouting conditions. The aim of this study was to determine which temperature gives the greatest difference in seed germination and expression of seed dormancy in 10 spring wheat genotypes. The genotypes were grown in the field near Swift Current, Saskatchewan in 2000 in a randomized complete block with four replicates. Seed samples were harvested at approximately 25% moisture content (wet weight basis) and dried to 12% moisture content with minimal after-ripening. Germination was under controlled environment at temperatures of 10, 15, 20 and 30 °C in darkness. A weighted germination index (WGI) was calculated. The analysis of WGI, for each temperature, showed highly significant (p ≤ 0.01) genotype effects on germination. Most genotypes decreased in WGI (increased dormancy) as temperature was increased from 10 to 30 °C. The greatest differences in seed germination tended to be at 15 °C and 20 °C. The level of seed dormancy depended on the genotype and germination temperature.
机译:由于收获前发芽会降低小麦籽粒的数量和质量,因此研究人员需要有效的方案来评估对收获前发芽条件的反应。这项研究的目的是确定10个春小麦基因型中哪个温度在种子发芽和种子休眠表达上产生最大差异。基因型于2000年在萨斯喀彻温省Swift Current附近的田地中生长,形成一个随机的完整区组,有四个重复。收获种子样品时,水分含量约为25%(以湿重为基准),干燥后水分含量降至12%,而后熟最少。在黑暗中在10、15、20和30°C的温度下在受控环境下发芽。计算加权发芽指数(WGI)。在每个温度下对WGI的分析表明,基因型对发芽有显着影响(p≤0.01)。随着温度从10°C升高到30°C,WGI(休眠增加)中的大多数基因型下降。种子发芽的最大差异倾向于在15°C和20°C。种子休眠水平取决于基因型和发芽温度。

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