Bezdudnaia E F, Kaliman P A
Ukr Biokhim Zh (1999). 2008 Jan-Feb;80(1):83-8.
The influence of CoCl2 and CdCl2 on the activity of isocytrate lyase, malate synthase and NAD-malate dehydrogenase in the seed lobes and the composition of malondialdehyde products at early stages of germinating of soybean seeds: after first 24-hours, 72 hours and 96 hours are investigated. It is shown that when germinating in the medium containing no metal salts, isocytrate lyase activity is greatly increased during 96 h and malate synthase is increased after 72 h and is decreased after 96 h of germination period. CoCl2 activated isocytrate lyase activity after 72 hours and decreased malate synthase activity after 96 hours. The lengthening of the primary root under such conditions is noted. CdCl2 inhibited isocytrate lyase activity during first 24 hours and suppressed malate synthase activity after 96 hours. During this process the germ growth is suppressed. CoCl2 increased the composition of malondialdehyde products during each period of germination, and CdCl2 increased malondialdehyde content after 72 and 96 hours. The role of glyoxylate cycle enzymes in transforming fatty acids into carbohydrates and in forming the primary root under the process of germination of seed lobes of soybean is discussed.
研究了CoCl₂和CdCl₂对大豆种子萌发初期子叶中异柠檬酸裂解酶、苹果酸合酶和NAD - 苹果酸脱氢酶活性以及丙二醛产物组成的影响:在最初的24小时、72小时和96小时后进行了研究。结果表明,在不含金属盐的培养基中萌发时,异柠檬酸裂解酶活性在96小时内大幅增加,苹果酸合酶在萌发72小时后增加,96小时后下降。CoCl₂在72小时后激活异柠檬酸裂解酶活性,96小时后降低苹果酸合酶活性。在这种条件下观察到初生根的伸长。CdCl₂在最初24小时内抑制异柠檬酸裂解酶活性,96小时后抑制苹果酸合酶活性。在此过程中胚芽生长受到抑制。CoCl₂在每个萌发时期都增加了丙二醛产物的组成,CdCl₂在72小时和96小时后增加了丙二醛含量。讨论了乙醛酸循环酶在大豆种子子叶萌发过程中脂肪酸转化为碳水化合物以及形成初生根中的作用。