Production of Hull-less Mutant of Pumpkin Seed under Different Abiotic Conditions

S. Gaspar, O. Basal, A. Simkó, L. Kiss, Dóra Frommer, S. Veres
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引用次数: 1

Abstract

Pumpkin seeds are crucial for both human and animal nutrition. Furthermore, the importance of pumpkin seed oil, the snack seed trade and even the medicinal uses of pumpkin seed products have been taken into account for the attempts to improve oil pumpkin seed yield, seed quality and other parameters. The climatic conditions may have a considerable effect on both the vegetative and the reproductive growth as well, and can influence the quality and quantity of the yield. Large-scale field experiment was set up to investigate the climatic sensitivity of hull-less pumpkins. Three groups of fields in different regions of Eastern-Hungary; Southern, Northern and Middle regions were involved in this study. Monthly average temperature and precipitation and soil chemical characteristics were analyzed. Based on the results, the lowest yield was achieved in the Northern region, potentially because of the higher amount of precipitation during the vegetation period. The higher precipitation can possibly increase the sensitivity of pumpkin plants to diseases. The highest amount of the seeds was achieved in the Middle region, where the distribution of the rainfall was moderate. From the investigated soil parameters, the pH had a measurable effect on the final seed yield. It could be concluded that higher precipitation and lower pH can lower pumpkin seed yield. Maximum yield might rely on continuously monitoring the soil moisture status and on the irrigation scheduling management, in addition to the nutrient availability in the soil. Further studies, however, are necessary to prove these hypotheses and to provide more useful data.
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不同非生物条件下南瓜籽无壳突变体的产生
南瓜籽对人类和动物的营养都至关重要。此外,在尝试提高南瓜籽产量、种子质量等参数时,考虑到南瓜籽油、零食种子贸易甚至南瓜籽产品药用的重要性。气候条件对植物的营养生长和生殖生长都有相当大的影响,并能影响产量的质量和数量。采用大规模田间试验研究了去壳南瓜的气候敏感性。东匈牙利不同地区的三组田地;这项研究涉及南部,北部和中部地区。分析了月平均气温、降水和土壤化学特征。结果表明,北部地区的产量最低,可能是由于植被期降水较多。较高的降水量可能会增加南瓜植株对病害的敏感性。种子产量最高的是中部地区,该地区降雨分布适中。从所调查的土壤参数来看,pH对最终种子产量有可测量的影响。由此可见,较高的降水量和较低的pH值会降低南瓜籽产量。除土壤养分有效性外,最大产量可能依赖于连续监测土壤水分状况和灌溉调度管理。然而,需要进一步的研究来证明这些假设并提供更多有用的数据。
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