Balke N E, Hodges T K
Department of Botany and Plant Pathology, Purdue University, West Lafayette, Indiana 47907.
Plant Physiol. 1979 Jan;63(1):53-6. doi: 10.1104/pp.63.1.53.
The possibility was investigated that diethylstilbestrol (DES) inhibits potassium absorption in oat (Avena sativa L. cv. Goodfield) roots by inhibiting mitochondrial functions in addition to inhibiting the plasma membrane ATPase. DES at 10(-6) molar stimulated the mitochondrial ATPase slightly, but higher concentrations had no effect. Oxidative phosphorylation by isolated mitochondria was inhibited 50% by 2.6 x 10(-5) molar DES; concentrations of 10(-4) molar or greater were completely inhibitory. After a lag of about 2 minutes, 10(-4) molar DES produced a linear decrease in ATP content of excised roots. After 20 minutes, the ATP content of the tissue was about 50% of the control and remained at that level after 30 minutes in DES.Comparison of changes in ATP content, plasma membrane ATPase activity, and K(+) absorption rate with time in the presence of DES showed that the rapid decrease in K(+) absorption rate corresponded more closely with the decrease in ATPase activity than the decrease in ATP content. Total inhibition of the ATPase was calculated by multiplying together the percentage decreases in ATPase activity and ATP content. At times greater than 10 minutes this "net" ATPase activity corresponded very closely with the K(+) absorption rate.These results show that DES can inhibit potassium absorption by reducing mitochondrial ATP production in addition to inhibiting the plasma membrane ATPase. However, the rapid (less than 5 minutes) inhibition of absorption is caused by direct inhibition of the ATPase rather than a reduced ATP supply because the ATP content is lowered only slightly whereas the ATPase is inhibited dramatically in that time. The relationship between plasma membrane ATPase activity and K(+) absorption rate as inhibited by DES supports the hypothesis that the ATPase is involved in cation absorption by plant roots.
研究了己烯雌酚(DES)除抑制质膜ATP酶外,是否还通过抑制线粒体功能来抑制燕麦(Avena sativa L. cv. Goodfield)根对钾的吸收。10^(-6)摩尔的DES对线粒体ATP酶有轻微刺激作用,但更高浓度则无影响。2.6×10^(-5)摩尔的DES可使离体线粒体的氧化磷酸化作用受到50%的抑制;10^(-4)摩尔或更高浓度则完全抑制。经过约2分钟的延迟后,10^(-4)摩尔的DES使离体根的ATP含量呈线性下降。20分钟后,组织中的ATP含量约为对照的50%,在DES中处理30分钟后仍维持在该水平。比较在DES存在下ATP含量、质膜ATP酶活性和K(+)吸收速率随时间的变化表明,K(+)吸收速率的快速下降与ATP酶活性的下降比与ATP含量的下降更密切相关。ATP酶的总抑制率通过将ATP酶活性和ATP含量的下降百分比相乘来计算。在大于10分钟时,这种“净”ATP酶活性与K(+)吸收速率非常密切相关。这些结果表明,DES除抑制质膜ATP酶外,还可通过减少线粒体ATP生成来抑制钾的吸收。然而,吸收的快速(小于5分钟)抑制是由ATP酶的直接抑制引起的,而不是ATP供应减少,因为在此期间ATP含量仅略有降低,而ATP酶则受到显著抑制。DES抑制的质膜ATP酶活性与K(+)吸收速率之间的关系支持了ATP酶参与植物根阳离子吸收的假说。