Yamori Wataru, von Caemmerer Susanne
Molecular Plant Physiology Group, Research School of Biology, Australian National University, Canberra, ACT, Australia.
Methods Mol Biol. 2011;684:383-91. doi: 10.1007/978-1-60761-925-3_30.
Rubisco activase functions to promote and maintain the catalytic activity of Rubisco. Studies with the activase-lacking Arabidopsis rca mutant (Salvucci et al. Photosynth Res 7:193-201, 1985; Salvucci et al. Plant Physiol 80:655-659, 1986), antisense activase tobacco, Arabidopsis and Flaveria bidentis plants (Mate et al. Plant Physiol 102:1119-1128, 1993; Eckardt et al. Plant Physiol 113:575-586, 1997; von Caemmerer et al. Plant Physiol 137:747-755, 2005) have shown that photosynthesis at atmospheric levels of CO2 is severely impaired when plants lack activase because Rubisco becomes sequestered in an inactive form. Activase protein has been detected in all plant species, including C3 and C4 plants and green algae (Salvucci et al. Plant Physiol 84:930-936, 1987). Rubisco activase is essential in all these photosynthetic organisms for photosynthesis and plant growth. The physiological importance of Rubisco activase is reinforced by recent studies indicating that it plays a role in the response of photosynthesis to temperature. In this chapter, we describe how to extract and quantify Rubisco activase content in leaf.
核酮糖-1,5-二磷酸羧化酶/加氧酶激活酶(Rubisco activase)的作用是促进和维持Rubisco的催化活性。对缺乏激活酶的拟南芥rca突变体的研究(Salvucci等人,《光合作用研究》7:193 - 201,1985;Salvucci等人,《植物生理学》80:655 - 659,1986)、反义激活酶烟草、拟南芥和二齿黄菊属植物(Mate等人,《植物生理学》102:1119 - 1128,1993;Eckardt等人,《植物生理学》113:575 - 586,1997;von Caemmerer等人,《植物生理学》137:747 - 755,2005)表明,当植物缺乏激活酶时,在大气CO₂浓度下光合作用会严重受损,因为Rubisco会被隔离成无活性形式。在所有植物物种中都检测到了激活酶蛋白,包括C₃和C₄植物以及绿藻(Salvucci等人,《植物生理学》84:930 - 936,1987)。Rubisco激活酶在所有这些光合生物中对于光合作用和植物生长都是必不可少的。最近的研究表明它在光合作用对温度的响应中起作用,这进一步强化了Rubisco激活酶的生理重要性。在本章中,我们描述了如何提取和定量叶片中Rubisco激活酶的含量。