Timm Stefan, Florian Alexandra, Fernie Alisdair R, Bauwe Hermann
University of Rostock, Plant Physiology Department, Albert-Einstein-Straße 3, D-18051 Rostock, Germany.
Max Planck Institute of Molecular Plant Physiology, Am Mühlenberg 1, D-14476 Potsdam-Golm, Germany.
J Exp Bot. 2016 May;67(10):2923-9. doi: 10.1093/jxb/erw083. Epub 2016 Mar 11.
The Calvin-Benson cycle and the photorespiratory pathway form the photosynthetic-photorespiratory supercycle that is responsible for nearly all biological CO2 fixation on Earth. In essence, supplementation with the photorespiratory pathway is necessary because the CO2-fixing enzyme of the Calvin-Benson cycle, ribulose 1,5-bisphosphate carboxylase (Rubisco), catalyses several side reactions including the oxygenation of ribulose 1,5-bisphosphate, which produces the noxious metabolite phosphoglycolate. The photorespiratory pathway recycles the phosphoglycolate to 3-phosphoglycerate and in this way allows the Calvin-Benson cycle to operate in the presence of molecular oxygen generated by oxygenic photosynthesis. While the carbon flow through the individual and combined subprocesses is well known, information on their regulatory interaction is very limited. Regulatory feedback from the photorespiratory pathway to the Calvin-Benson cycle can be presumed from numerous inhibitor experiments and was demonstrated in recent studies with transgenic plants. This complexity illustrates that we are not yet ready to rationally engineer photosynthesis by altering photorespiration since despite massive understanding of the core photorespiratory pathway our understanding of its interaction with other pathways and processes remains fragmentary.
卡尔文-本森循环和光呼吸途径构成了光合-光呼吸超级循环,该循环负责地球上几乎所有的生物二氧化碳固定。从本质上讲,光呼吸途径的补充是必要的,因为卡尔文-本森循环的二氧化碳固定酶,即核酮糖-1,5-二磷酸羧化酶(Rubisco),会催化多种副反应,包括核酮糖-1,5-二磷酸的氧化,这会产生有害代谢物磷酸乙醇酸。光呼吸途径将磷酸乙醇酸再循环为3-磷酸甘油酸,从而使卡尔文-本森循环能够在光合放氧产生的分子氧存在的情况下运行。虽然碳在各个单独和联合子过程中的流动是已知的,但关于它们调控相互作用的信息非常有限。从大量抑制剂实验中可以推测光呼吸途径对卡尔文-本森循环的调控反馈,并且在最近对转基因植物的研究中得到了证实。这种复杂性表明,尽管我们对核心光呼吸途径有大量了解,但对其与其他途径和过程的相互作用的理解仍然支离破碎,因此我们还没有准备好通过改变光呼吸来合理地设计光合作用。