Regulation of Spermidine on Respiratory Metabolism of Maize Seedling Roots under Waterlogging Stress
Abstract: To inquire into the regulation mechanism of spermidine on respiratory metabolism of maize seedling roots under waterlogging stress, taking two different maize varieties Zhengdan 958 (weak resistance to flooding) and Xundan 22 (flood resistance ability) as materials in this experiment, we studied the effects of spermidine on the anaerobic respiratory enzyme activity and metabolite contents in maize seedling roots under waterlogging stress. The results are as follows: under normal growth conditions, the changes in the anaerobic respiratory enzyme activity (lactate dehydrogenase LDH, pyruvate decarboxylase PDC and ethanol dehydrogenase ADH) and metabolite content(ethanol) of two maize seedling roots was not obvious; However, under Waterlogging stress, the anaerobic respiratory enzyme activities and ethanol content in two maize seedling roots increased significantly, and the increase of LDH in Zhengdan 958" (weak resistance to flooding) was more significant than that in Xundan 22(flood resistance ability), but the increase of PDH and ADH in Xundan 22(flood resistance ability) was more significant than that in Zhengdan 958" (weak resistance to flooding) ; after treatment with spermidine(Spd), the activity of LDH, PDC and ADH decreased in two maize seedling root, and the content of alcohol also decreased. The results showed that under waterlogging stress, Spd could decrease the content of anaerobic metabolism product via reducing the activity of anaerobic respiration enzymes in maize seedlings roots, relieve the injury to the maize seedlings, and promote the growth of maize seedlings.
Key words: Spermidine; Waterlogging stress; Respiratory metabolism; Maize
目 录
摘要: 1
关键词: 1
引言 2
1. 材料与培养 3
1.1 供试品种 3
1.2 试剂 3
1.3材料培养和实验设计 3
2. 测定项目及测定方法 4
2.1无氧呼吸代谢酶活性的测定 4
2.1.1 酶液的提取 4
2.1.2乳酸脱氢酶(LDH)活性的测定 4
2.1.3丙酮酸脱羧酶(PDC)活性的测定 4
2.1.4乙醇脱氢酶(ADH)活性的测定 4
2.2 代谢产物含量的测定 5
2.2.1代谢产物的提取: 5
2.2.2代谢产物含量的测定: 5
3.结果与分析 5
3.1亚精胺对淹水胁迫下玉米幼苗根系乳酸脱氢酶(LDH)活性的影响 5