干旱胁迫对春大豆超氧化物歧化酶活性和丙二醛含量的影响
Effect of drought stress on SOD activity and MDA content of spring soybean
大豆是一种对水分最敏感的豆类作物,明确干旱对大豆叶片主要生理特性的影响,对于进行更好的水分管理具有重要的理论和实践意义。本试验选用耐旱型品种黑农44和敏感型品种黑农65为材料,测定了不同生育时期干旱及复水后大豆叶片SOD活性和MDA含量。结果表明:在干旱条件下,SOD活性随干旱程度增加呈先增加后降低的趋势,活性增加幅度花期>苗期>鼓粒期,且黑农44的SOD活性明显大于黑农65;MDA含量随干旱程度增加呈逐渐上升趋势,苗期>开花期>鼓粒期,且黑农44明显小于黑农65。复水后,SOD活性和MDA含量均逐渐降低;苗期干旱复水后MDA含量恢复较快,开花期干旱复水后恢复时间较长,鼓粒期干旱复水后不能恢复。
Soybean is one of the most sensitive to water in legume crops. Clearing the effect of drought stress on leaf physiological characteristics of soybean is an important theoretical and practical significance for better managing water .This test measured the leaf SOD activity and MDA content at different growth stages under the condition of drought stress and consequent re-watering, choosing the drought-resistant variety(Heinong 44) and the sensitive variety(Heinong 65) as materials. The results suggested that SOD activity initially increased and then decreased with increasing water stress , further the rate of increase was that the flowering stage >the seedling stage >the filling stage .SOD activity of Heionng 44 is significantly stronger than Heinong 65 . Increasing drought stress MDA content initially increased. The rate of increase was that the seedling stage >the flowering stage >the filling stage and the MDA content of Heinong 44 obviously lower than Heinong 65. After re-watering,SOD activity and MDA content of both cultivars gradually decreased approaching the control treatment. Whereas re-watering at seeding stage was better for MDA content to recover than at flowering stage.MDA content can't recoverwhen re-watering at filling stage.
李雪凝、高鑫宇、徐亚会、王利彬、董守坤、刘丽君
农业科学研究植物学生理学
大豆活性氧水分SODMDA
soybeanreactive oxygenwaterSODMDA
李雪凝,高鑫宇,徐亚会,王利彬,董守坤,刘丽君.干旱胁迫对春大豆超氧化物歧化酶活性和丙二醛含量的影响[EB/OL].(2015-01-30)[2025-08-06].http://www.paper.edu.cn/releasepaper/content/201501-517.点此复制
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