Department of Biology, University of California, 90024-1786, Los Angeles, CA, USA.
Photosynth Res. 1994 Jun;40(3):223-9. doi: 10.1007/BF00034772.
Responses of ribulose-1,5-bisphosphate carboxylase/oxygenase (Rubisco) and phosphoenolpyruvate carboxylase (PEPCase) to an elevated atmospheric CO2 concentration were determined along with net CO2 uptake rates for the Crassulacean acid metabolism species Opuntia ficus-indica growing in open-top chambers. During the spring 13 months after planting, total daily net CO2 uptake of basal and first-order daughter cladodes was 28% higher at 720 than at 360 μl CO2 l(-1). The enhancement, caused mainly by higher CO2 assimilation during the early part of the night, was also observed during late summer (5 months after planting) and the following winter. The activities of Rubisco and PEPCase measured in vitro were both lower at the elevated CO2 concentration, particularly under the more favorable growth conditions in the spring and late summer. Enzyme activity in second-order daughter cladodes increased with cladode age, becoming maximal at 6 to 10 days. The effect ofelevated CO2 on Rubisco and PEPCase activity declined with decreasing irradiance, especially for Rubisco. Throughout the 13-month observation period, O. ficus-indica thus showed increased CO2 uptake when the atmospheric CO2 concentration was doubled despite lower activities of both carboxylating enzymes.
在开顶式气室中生长的景天酸代谢物种 Opuntia ficus-indica 中,测定了 Rubisco(核酮糖-1,5-二磷酸羧化酶/加氧酶)和 PEPcase(磷酸烯醇丙酮酸羧化酶)对大气 CO2 浓度升高的反应以及净 CO2 吸收速率。在种植后 13 个月的春季期间,在 720 比 360 μl CO2 l(-1) 时,基生和一级子节的总日净 CO2 吸收量高 28%。这种增强主要是由于夜间早期 CO2 同化作用更高,在夏末(种植后 5 个月)和随后的冬季也观察到。在体外测量的 Rubisco 和 PEPcase 的活性在较高的 CO2 浓度下均较低,特别是在春季和夏末更有利的生长条件下。二级子节的酶活性随节的年龄而增加,在 6 至 10 天时达到最大值。Rubisco 和 PEPcase 活性对 CO2 的影响随着光照强度的降低而降低,尤其是对 Rubisco。在 13 个月的观察期内,尽管两种羧化酶的活性都降低了,但当大气 CO2 浓度增加一倍时,O. ficus-indica 仍然增加了 CO2 的吸收。