Carter O G, Lathwell D J
Department of Agronomy, Cornell University, Ithaca, New York 14850.
Plant Physiol. 1967 Oct;42(10):1407-12. doi: 10.1104/pp.42.10.1407.
The uptake of orthophosphate ((32)P) by excised corn roots, Zea mays L. was studied using roots grown on 0.2 mm CaSO(4). Nine concentrations of KH(2)PO(4) from 1 to 256 mum were used at temperatures of 20 degrees , 30 degrees , and 40 degrees . Enzyme kinetic analysis was applied to the data obtained. Two apparent mechanisms (sites) of phosphate uptake were observed, 1 dominating at high P concentrations and 1 at low P concentrations. A Km of 1.36 x 10(-4) and a Vmax of 177 x 10(-9) moles per gram of roots per hour at 30 degrees was calculated for the mechanism dominating at high P concentrations. Similar calculations gave a Km of 6.09 x 10(-6) and a Vmax of 162 x 10(-9) moles per gram of roots per hour at 30 degrees for the mechanism dominating at low P concentrations. The Q(10) for both mechanisms was approximately 2. Calculation of thermodynamic values from the data gave DeltaF of - 5200 cal, DeltaH of - 950 to - 1400 cal, and a enthalpy of activation (A) of 10,300 to 13,800 cal per mole for the mechanism dominating at high P concentrations. Similar calculations from the data for the mechanism dominating at low P concentrations gave a DeltaF of - 7300 cal, DeltaH of - 10,700 to - 8200 cal, and a A of 9300 to 18,900 cal per mole. If the dual mechanism interpretation of this kind of data adequately describes this system, then both mechanisms of P absorption by corn roots involve chemical reactions.
利用在0.2毫米硫酸钙上生长的玉米(Zea mays L.)离体根,研究了其对正磷酸盐((32)P)的吸收。在20℃、30℃和40℃的温度下,使用了9种浓度从1至256微摩尔的磷酸二氢钾。对所获数据进行酶动力学分析。观察到两种明显的磷酸盐吸收机制(位点),一种在高磷浓度下起主导作用,另一种在低磷浓度下起主导作用。对于在高磷浓度下起主导作用的机制,在30℃时计算得出的米氏常数(Km)为1.36×10⁻⁴,最大反应速度(Vmax)为每克根每小时177×10⁻⁹摩尔。类似计算得出,在30℃时,对于在低磷浓度下起主导作用的机制,Km为6.09×10⁻⁶,Vmax为每克根每小时162×10⁻⁹摩尔。两种机制的温度系数(Q(10))约为2。根据数据计算热力学值,对于在高磷浓度下起主导作用的机制,自由能变化(ΔF)为 - 5200卡,焓变(ΔH)为 - 950至 - 1400卡,每摩尔活化焓(A)为10300至13800卡。对在低磷浓度下起主导作用的机制的数据进行类似计算,得出ΔF为 - 7300卡,ΔH为 - 10700至 - 8200卡,每摩尔A为9300至18900卡。如果对这类数据的双重机制解释能充分描述该系统,那么玉米根吸收磷的两种机制都涉及化学反应。