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Methods for breaking Chinese lantern (Physalis alkekengi L.) seed dormancy. Laboratory and greenhouse studies

机译:打破中国灯笼(Physalis alkekengi L.)种子休眠的方法。实验室和温室研究

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In order to evaluate different methods of seed dormancy breaking for Chinese lantern (Physalis alkekengi L.), two experiments were conducted at laboratory and greenhouse conditions. The laboratory treatments were 22 different physical and chemical methods such as washing, stratification, scarification (sandy paper), sulfuric acid, gibberellic acid, potassium nitrate and the combination of both physical and chemical treatments. Eight of the best breaking seed dormancy?treatments at the laboratory study were assessed at the greenhouse study. The?results of the first experiment showed that all the treatments had significant?effects on the measured traits. The highest germination percentage was shown?in the combinational treatments (washing + gibberellic acid, sulfuric acid +?potassium nitrate, scarification + gibberellic acid and scarification + potassium?nitrate). These treatments led to 100% germination. The minimum mean?germination time (MGT) was found in the washing + gibberellic acid (3.89 days), washing + potassium nitrate (4.42 days) and stratification + gibberellic acid (4.79 days) treatments. Sulfuric acid + potassium nitrate, washing + gibberellic acid, washing + potassium nitrate and stratification + potassium nitrate led to the highest seed vigor. The results of the second experiment revealed that the best treatments in terms of emergence percentage (EP) in the greenhouse were sulfuric acid + potassium nitrate (92%) and sulfuric acid + gibberellic acid (89%). Also, the minimum mean emergence time (MET) was obtained in washing + gibberellic acid (10 days). The highest seed vigor was found in washing + potassium nitrate and sulfuric acid + gibberellic acid. Totally, washing + gibberellic acid, washing + potassium nitrate, sulfuric acid + gibberellic acid and sulfuric acid + potassium nitrate were the best treatments to break Chinese lantern seed dormancy regarding germination percentage, MET and seed vigor. ?
机译:为了评估中国灯笼(Physalis alkekengi L.)打破种子休眠的不同方法,在实验室和温室条件下进行了两个实验。实验室处理方法有22种不同的物理和化学方法,例如洗涤,分层,划痕(砂纸),硫酸,赤霉素,硝酸钾以及物理和化学方法的结合。在温室研究中,评估了实验室研究中八种最佳的打破种子休眠的处理方法。第一个实验的结果表明,所有处理对所测性状均具有显着影响。在组合处理(洗涤+赤霉素,硫酸+硝酸钾,划痕+赤霉素和划痕+硝酸钾)中,发芽率最高。这些处理导致100%发芽。在洗涤+赤霉素(3.89天),洗涤+硝酸钾(4.42天)和分层+赤霉素(4.79天)处理中发现了最小平均发芽时间(MGT)。硫酸+硝酸钾,水洗+赤霉素,水洗+硝酸钾和分层+硝酸钾导致最高的种子活力。第二个实验的结果表明,就温室中出苗率(EP)而言,最佳处理方法是硫酸+硝酸钾(92%)和硫酸+赤霉素(89%)。另外,在洗涤+赤霉素(10天)中获得最小平均出现时间(MET)。在洗涤+硝酸钾和硫酸+赤霉素中发现了最高的种子活力。总体而言,洗涤+赤霉素,洗涤+硝酸钾,硫酸+赤霉素和硫酸+硝酸钾在打破发芽率,MET和种子活力方面是打破中国灯笼种子休眠的最佳方法。 ?

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