Berkowitz G A, Wu W
Plant Science Department, Cook College, Rutgers-State University of New Jersey, New Brunswick.
Magnes Res. 1993 Sep;6(3):257-65.
Photosynthetic capacity of chloroplasts is regulated by stromal pH. The pH of the stroma must be maintained higher than external pH during illumination in order to optimize photosynthetic carbon reduction cycle activity. Stromal pH is affected by K+/H+ counterexchange across the chloroplast envelope. Magnesium ion external to the chloroplast affects K+/H+ counterfluxes and hence stromal pH and photosynthesis. K+/H+ counterfluxes across the envelope are facilitated by K+ and H+ conducting ion channels, and an H+ pumping envelope ATPase. External magnesium affects K+/H+ exchange by binding to negative surface charges on the envelope membrane. Magnesium binding restricts currents through K+ channels. Magnesium block of K+ uptake through this channel impairs H+ efflux, inhibiting photosynthesis. Under conditions which lead to net K+ efflux through the channel, envelope-bound magnesium restricts K+ efflux, reducing the driving force for electroneutral H+ uptake. External magnesium has a profound effect on chloroplast photosynthetic capacity by an indirect control of H+ movement across the envelope and hence of stromal pH.
叶绿体的光合能力受基质pH的调节。在光照期间,基质的pH必须维持得高于外部pH,以便优化光合碳还原循环的活性。基质pH受叶绿体包膜上K⁺/H⁺反向交换的影响。叶绿体外部的镁离子会影响K⁺/H⁺反向通量,进而影响基质pH和光合作用。包膜上的K⁺和H⁺传导离子通道以及一个H⁺泵包膜ATP酶促进了K⁺/H⁺跨包膜的反向通量。外部镁通过与包膜膜上的负表面电荷结合来影响K⁺/H⁺交换。镁结合会限制通过K⁺通道的电流。通过该通道的K⁺摄取受到镁的阻断会损害H⁺外流,从而抑制光合作用。在导致K⁺通过该通道净外流的条件下,包膜结合的镁会限制K⁺外流,降低电中性H⁺摄取的驱动力。外部镁通过间接控制H⁺跨包膜的移动以及基质pH,对叶绿体的光合能力产生深远影响。