Peters Jeanne S, Frenkel Chaim
Plant Biology and Pathology Department, Rutgers, The State University of New Jersey, New Brunswick, NJ 08901-8520, USA.
Plant Physiol Biochem. 2004 Dec;42(10):841-6. doi: 10.1016/j.plaphy.2004.10.004.
We have examined the role of alcohol dehydrogenase (ADH, E.C.1.1.1.1) in chilling tolerance using maize (Zea mays L.) Adh1(-)Adh2(-) doubly null mutant. Adh1(-)Adh2(-) doubly null seedlings were found to have lowered survival rates compared to non-doubly null maize seedlings (Silverado F(1)) when held at 2 degrees C for varying periods. Exposure to ethanol did not increase the chilling tolerance in either Silverado F(1) or Adh1(-)Adh2(-) doubly null. ADH activity in Silverado F(1) remained steady when held at 2 degrees C for up to 3 d. ADH1 protein accumulation in chilled Silverado F(1) seedlings remained unchanged throughout the period of cold exposure. Chilling led to a significant inhibition of the P-H(+)-ATPase (E.C. 3.6.3.6) activity in Adh1(-)Adh2(-)doubly null, but minimal inhibition was seen in Silverado F(1). Though P-H(+)-ATPase activity in Adh1(-)Adh2(-) decreased, P-H(+)-ATPase protein levels remained constant during the chilling period. Levels of ATP slightly fluctuated in both types of seedlings during the duration of chilling. Lipid peroxidation levels in Adh1(-)Adh2(-) doubly null increased with chilling exposure, but not in the Silverado F(1). We suggest that ADH activity may play a role in chilling tolerance that is not related to maintenance of glycolysis and ATP production as has been observed during oxygen depravation.
我们利用玉米(Zea mays L.)Adh1(-)Adh2(-)双缺失突变体研究了乙醇脱氢酶(ADH,E.C.1.1.1.1)在耐寒性中的作用。与非双缺失玉米幼苗(Silverado F(1))相比,发现Adh1(-)Adh2(-)双缺失幼苗在2℃下放置不同时间后存活率降低。无论是Silverado F(1)还是Adh1(-)Adh2(-)双缺失幼苗,暴露于乙醇中均未提高其耐寒性。Silverado F(1)在2℃下放置长达3天时,ADH活性保持稳定。在低温暴露期间,低温处理的Silverado F(1)幼苗中ADH1蛋白积累量保持不变。低温导致Adh1(-)Adh2(-)双缺失幼苗中P-H(+)-ATPase(E.C. 3.6.3.6)活性受到显著抑制,但在Silverado F(1)中仅观察到最小程度的抑制。尽管Adh1(-)Adh2(-)中P-H(+)-ATPase活性降低,但在低温处理期间P-H(+)-ATPase蛋白水平保持恒定。在低温处理期间,两种类型的幼苗中ATP水平均略有波动。Adh1(-)Adh2(-)双缺失幼苗中的脂质过氧化水平随低温暴露而增加,但在Silverado F(1)中未增加。我们认为,ADH活性在耐寒性中可能发挥的作用与缺氧期间观察到的维持糖酵解和ATP产生无关。