Spijkerman Elly, Stojkovic Slobodanka, Beardall John
Universität Potsdam, Am Neuen Palais 10, 14469, Potsdam, Germany,
Photosynth Res. 2014 Sep;121(2-3):213-21. doi: 10.1007/s11120-014-0016-6. Epub 2014 Jun 7.
The extremophilic green microalga Chlamydomonas acidophila grows in very acidic waters (pH 2.3-3.4), where CO2 is the sole inorganic carbon source. Previous work has revealed that the species can accumulate inorganic carbon (Ci) and exhibits high affinity CO2 utilization under low-CO2 (air-equilibrium) conditions, similar to organisms with an active CO2 concentrating mechanism (CCM), whereas both processes are down-regulated under high CO2 (4.5 % CO2) conditions. Responses of this species to phosphorus (Pi)-limited conditions suggested a contrasting regulation of the CCM characteristics. Therefore, we measured external carbonic anhydrase (CAext) activities and protein expression (CAH1), the internal pH, Ci accumulation, and CO2-utilization in cells adapted to high or low CO2 under Pi-replete and Pi-limited conditions. Results reveal that C. acidophila expressed CAext activity and expressed a protein cross-reacting with CAH1 (the CAext from Chlamydomonas reinhardtii). Although the function of this CA remains unclear, CAext activity and high affinity CO2 utilization were the highest under low CO2 conditions. C. acidophila accumulated Ci and expressed the CAH1 protein under all conditions tested, and C. reinhardtii also contained substantial amounts of CAH1 protein under Pi-limitation. In conclusion, Ci utilization is optimized in C. acidophila under ecologically relevant conditions, which may enable optimal survival in its extreme Ci- and Pi-limited habitat. The exact physiological and biochemical acclimation remains to be further studied.
嗜极端环境的绿藻嗜酸衣藻生长在非常酸性的水体中(pH 2.3 - 3.4),在那里二氧化碳是唯一的无机碳源。先前的研究表明,该物种能够积累无机碳(Ci),并且在低二氧化碳(空气平衡)条件下表现出高亲和力的二氧化碳利用能力,类似于具有活跃二氧化碳浓缩机制(CCM)的生物,而在高二氧化碳(4.5%二氧化碳)条件下这两个过程都会下调。该物种对磷(Pi)限制条件的反应表明CCM特征存在不同的调控。因此,我们测量了在磷充足和磷限制条件下适应高或低二氧化碳的细胞中的外部碳酸酐酶(CAext)活性和蛋白质表达(CAH1)、内部pH、Ci积累和二氧化碳利用情况。结果表明,嗜酸衣藻表达CAext活性,并表达一种与CAH1(莱茵衣藻的CAext)发生交叉反应的蛋白质。尽管这种CA的功能尚不清楚,但CAext活性和高亲和力二氧化碳利用在低二氧化碳条件下最高。嗜酸衣藻在所有测试条件下都积累Ci并表达CAH1蛋白,莱茵衣藻在磷限制条件下也含有大量的CAH1蛋白。总之,嗜酸衣藻在生态相关条件下优化了Ci利用,这可能使其在极端的Ci和Pi限制的栖息地中实现最佳生存。确切的生理和生化适应仍有待进一步研究。