甜菜碱对番茄形态生理特性的影响盐渍条件下的栽培品种

M. A. Shahzad, Karim Yar Abbasi, A. Shahzad, F. Zaidi
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引用次数: 1

摘要

番茄(Lycopersiconesculentum L.)是茄科的一种长生育期作物。就蔬菜而言,番茄是第二大作物,在世界各地广泛种植。虽然番茄对盐有中等的敏感性,但对耐盐性的研究还需要更多的关注。全世界超过30%的耕地受到严重的盐碱化影响。本试验旨在研究不同盐度条件下番茄的形态生理变化;不同水平外源甘氨酸甜菜碱的应用。研究了番茄基因型的耐盐性。实验在受控条件下,在IHS, UAF的生长室内进行。盐度水平采用不同浓度的氯化钠盐(0、1.5和3ds - m-1)。番茄采用中型塑料盆播种,以沙为生长介质。采用霍格兰溶液对番茄幼苗进行营养。在3-4叶期施盐。然后考察了甘氨酸甜菜碱(0、5、10和15mM)对番茄耐盐性的影响。采用相应的统计软件包对各属性数据进行统计分析。结果表明,盐度对番茄生长有不利影响。除电解质渗漏在盐胁迫下放大外,形态特征和生理特征均随盐胁迫而降低。外源施用甜菜碱能提高基因型番茄的耐盐性,促进生长。
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Effect of Glycine Betaine on Morphological and Physiological Attributes of Tomato (Lycopersicon esculentum L.) Cultivars under Saline Conditions
Tomato (Lycopersiconesculentum L.) is a long duration crop belongs to a family Solanaceae. In case of vegetables, tomato is a second major crop, cultivated wide range throughout the world. Although, tomato is moderate sensitive to salinity yet for salinity tolerance more attention is required. More than 30% cultivated land all over the world severely affected by the salinity. In this scenario, experiment was designed to investigate various morphological and physiological aspects of tomato under various salinity levels; different levels of exogenous glycine betaine applications. Study was conducted to reveal the salt tolerance in tomato genotypes. Experiment was performed under controlled condition in the growth chamber of the IHS, UAF. Different concentrations of sodium chloride salt (0, 1.5 and 3 dS m-1) was used for salinity levels. Medium size plastic pots were used for sowing of tomato and sand was used as growing medium. Hoagland solution was applied for nourishment of tomato seedlings. Salinity was applied on 3-4 leaf stage. Then examined the effect of glycine betaine (0, 5, 10 and 15mM) for salt tolerance on tomato cultivars. Data of various attributes was collected and analyzed statistically by appropriate statistical package. Results revealed that tomato growth was negatively affected by the salinity. Morphological attributes and physiological attributes reduced in response to salinity except electrolyte leakage which amplified in salt stress. Exogenous application of glycine betaine promotes the tolerance against the salinity in the tomato genotypes and enhance growth.
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