Eman H. Abd El-Azeiz, R. E. El Mantawy, E. S. Mohamed
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引用次数: 3
Abstract
The present study was carried out at the experimental farm of Tag El-Ezz Agricultural Research Station (30 o 59 \ N latitude, 31 o 58 \ E longitude ́), Agricultural Research Center, Dakahlia Governorate, Egypt, to study the effect of foliar spraying of arginine on four soybean cultivars under salinity stress. This experiment was laid out in a split plot design with three replicates during the two successive summer seasons of 2020 and 2021. The main plots were occupied by four soybean cultivars (Giza 111, Giza 21, Giza 35 and Crawford), while subplots contained arginine treatments i.e. without spray (control), spray with arginine at 200 and 300 mg l -1 . The obtained results showed that, cultivars showed a wide range of variation in their salinity sensitivity where, Giza 111 gave the highest values of the most vegetative growth parameters i.e., chlorophyll content, relative water content (RWC%), nutrients content in leaves, proline content as well as catalase and peroxidase enzymes activities, thus increased seed yield, seed nutrients, protein, carbohydrates and oil %. Concerning, foliar spraying of arginine ameliorate inhibitory effect of salinity on soybean cultivars in comparison to the control. The highest values of most studied vegetative growth parameters, yield and yield components were achieved by foliar spray of arginine at 300 mg l -1 . The interaction between soybean cultivars and foliar spraying of arginine revealed that, Giza 111 treated with arginine at 300 mg l -1 gave the highest values of growth, yield and yield components.
本研究在埃及Dakahlia省农业研究中心Tag El-Ezz农业研究站(30 o 59 \ N, 31 o 58 \ E经度)试验农场,研究了盐胁迫下叶面喷施精氨酸对4个大豆品种的影响。本试验采用分割小区设计,在2020年和2021年连续两个夏季进行3个重复。以吉萨111、吉萨21、吉萨35和克劳福德4个大豆品种为主要种植品种,以不喷精氨酸(对照)、喷精氨酸200 mg / l -1和300 mg / l -1为次要种植品种。结果表明,不同品种的盐敏感性差异较大,其中吉萨111对叶绿素含量、相对含水量(RWC%)、叶片养分含量、脯氨酸含量、过氧化氢酶和过氧化物酶活性等营养生长参数的敏感性最高,从而提高了种子产量、种子养分、蛋白质、碳水化合物和油%。叶面喷施精氨酸能显著改善大豆品种的盐胁迫抑制效果。在叶面喷施300 mg l -1精氨酸时,其营养生长参数、产量和产量组成均达到最高值。叶面喷施精氨酸与大豆品种间的互作结果表明,300 mg l -1精氨酸处理的吉萨111的生长、产量和产量组成最高。