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首页> 外文期刊>Journal of Agronomy >Biochemical and Mineral Responses of Okra Seeds ( Abelmoschus esculentus L. Variety Marsaouia) to Salt and Thermal Stresses
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Biochemical and Mineral Responses of Okra Seeds ( Abelmoschus esculentus L. Variety Marsaouia) to Salt and Thermal Stresses

机译:黄秋葵种子(Abelmoschus esculentus L. Variety Marsaouia)对盐和热胁迫的生化和矿物响应

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The present research has studied the effects of NaCl and temperature on germination and emergence of okra. Studies were carried out with seeds of a local okra variety (Marsaouia) subjected to 0 and 100 mM NaCl, performed in the dark at 10, 15, 25, 35 and 40°C at germination stage and by 12 h light at emergence stage. The cumulative germination percentage , the cumulative emergence percentage, starch content, the reducing sugars levels, total amylase activity, sodium and potassium accumulation were quantified in germinated seeds at 15°C, 25 and 35°C. Temperature presented a significant effect on salt sensitivity of this species at germination and emergence stages. Germination of okra seeds was completely inhibited at 10 and 40°C. The best germination and emergence temperature was recorded at 25°C. The adverse effect of salt was more pronounced at low and high temperature . During the salt stress treatment, the level of starch reserves was higher at 25°C and lower at 15 and 35°C, an increase in reducing sugars content in cotyledons was observed. The activity of total amylase was most intensive at lower temperature in control seeds and at higher temperature in salt treated seeds. The sodium concentration on germinated seeds increased significantly at 15 and 35°C, but potassium amount did not change regularly within thermal and salt stress interaction.
机译:本研究研究了氯化钠和温度对黄秋葵发芽和出苗的影响。用当地秋葵品种(Marsaouia)的种子进行0和100 mM NaCl的研究,发芽阶段在黑暗中于10、15、25、35和40°C在黑暗中进行,萌芽阶段在12 h光照下进行。在15℃,25℃和35℃下,对发芽种子中的累积发芽率,累积出苗率,淀粉含量,还原糖水平,总淀粉酶活性,钠和钾积累进行定量。温度对发芽和出苗阶段该物种的盐敏感性具有显着影响。在10和40°C下,黄秋葵种子的发芽被完全抑制。记录的最佳发芽和出苗温度为25°C。盐的不利影响在低温和高温下更为明显。在盐胁迫处理期间,淀粉储备量在25°C时较高,而在15和35°C时较低,观察到子叶中还原糖含量的增加。总淀粉酶的活性在对照种子的较低温度下和盐处理的种子的较高温度下最强。发芽的种子中的钠浓度在15和35°C时显着增加,但在热和盐胁迫相互作用下钾含量没有规律地变化。

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