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Seed dormancy and longevity variability of Hirschfeldia incana L. during storage

机译:Hirschfeldia Incana L的种子休眠和长寿变异性。在储存期间

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We studied the variability of germination, dormancy and viability loss of Hirschfeldia incana seeds in relation to seed size. Seeds were stored at 35 degrees C under humid [75% relative humidity (RH)] or dry (33% RH) conditions. Seed germination and electrolyte leakage were evaluated periodically. Small seeds had lower longevity at humid or dry storage conditions (5 or 407 days, respectively) than large or intermediate seeds (7-9 or 536-727 days, respectively). Moreover, H. incana shows variability in seed dormancy related to seed size within a population, with small seeds having lower dormancy (13%) than intermediate (50%) or large seeds (72%). Dormancy was partially released after a short storage at 35 degrees C and humid conditions. Under dry storage conditions, endogenous dormancy cycles were observed for over a year, and longer times of storage had a dormancy-breaking effect through dry after-ripening. Results suggest a dual strategy producing non-dormant seeds with low longevity that will germinate immediately after dispersal, and seeds with greater longevity that will delay germination. Membrane permeability increased linearly with ageing at both humid and dry storage (R-2 = 0.60). Small seeds showed greater conductivity than intermediate or large seeds (0.7, 0.4 or 0.3 mS g(-1) dry weight, respectively, at the 80% germination). The conductivity test could be used to evaluate the quality of H. incana seeds and would allow us to identify dormant (non-germinating) seed lots as viable. However, the influence of storage conditions and variability within a seed population on seed longevity should be taken into account when evaluating seed quality.
机译:我们研究了Hirschfeldia incana种子的萌发,休眠和活力丧失的可变性与种子大小。将种子在35摄氏度下储存在潮湿的[75%相对湿度(RH)]或干燥(33%RH)条件下。定期评价种子萌发和电解质泄漏。小种子在潮湿或干燥储存条件下的寿命较低(分别为5或407天),而不是大或中间种子(分别为7-9或536-727天)。此外,H. Incana表现出与种子大小相关的种子休眠的可变性,小种子比中间体(50%)或大种子(72%)具有较低的休眠(13%)。在35摄氏度的短储存和潮湿的条件下,休眠部分释放。在干燥的储存条件下,观察到一年多的内源性休眠循环,并且通过干燥后熟发的干燥效果更长的储存效果。结果表明,一种生产非休眠种子的双重策略,低寿命低,将在分散后立即发芽,种子具有更大的长寿,延迟发芽。膜渗透性随着潮湿和干燥储存的老化而升高(R-2 = 0.60)。小种子显微显示出比中间体或大种子或大种子(0.7,0.4或0.3ms G(-1)干重分别在80%萌发中的导电性。电导率测试可用于评估H. Incana种子的质量,并使我们能够识别休眠(非发芽)种子批次作为可行的。然而,在评估种子质量时,应考虑种子群中的储存条件和种子种群内的变异性的影响。

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