Orellana Mhica V, Perry Mary Jane
School of Oceanography, WB- 10, University of Washington, Seattle 98 195.
Limnol Oceanogr. 1992 May;37(3):478-490. doi: 10.4319/lo.1992.37.3.0478. Epub 2003 Dec 22.
The cross-reactivity of an immunological probe to the key photosynthetic enzyme Rubisco (ribulose-1,5-bisphosphate carboxylase/oxygenase) was characterized as part of a larger effort to determine maximal photosynthetic rates of individual phytoplankton cells. Polyclonal antiserum was produced against purified Rubisco from the marine diatom The results of western immunoblotting demonstrated that the antiserum reacted positively with Rubisco from 38 species of algae and higher plants and failed to react with only three species of dinoflagellates and one prochlorophyte species. However, the binding affinity or the strength of the cross-reaction for the polyclonal antiserum with purified Rubisco varied among species. The antiserum was then affinity purified against spinach Rubisco and its binding affinity for purified Rubisco determined by ELISA. Two taxonomic groupings resulted: one with high-binding affinity (these species included chrysophytes, bacillariophytes, prymnesiophytes, and chlorophytes) and the other with low-binding affinity (dinophytes and cyanophytes). Rubisco concentration per cell and light-saturated rates of photosynthesis were highly correlated for cultures of the diatom These results indicate that affinity-purified antiserum can be rigorously characterized for use in quantifying Rubisco concentration and for assessing the maximal photosynthetic potential of individual phytoplankton cells.
作为确定单个浮游植物细胞最大光合速率这项更大规模工作的一部分,对一种免疫探针与关键光合酶核酮糖-1,5-二磷酸羧化酶/加氧酶(Rubisco)的交叉反应性进行了表征。制备了针对海洋硅藻纯化Rubisco的多克隆抗血清。蛋白质免疫印迹的结果表明,该抗血清与38种藻类和高等植物的Rubisco发生阳性反应,仅与三种甲藻和一种原绿藻不发生反应。然而,多克隆抗血清与纯化Rubisco的结合亲和力或交叉反应强度在不同物种间存在差异。然后用菠菜Rubisco对该抗血清进行亲和纯化,并通过酶联免疫吸附测定(ELISA)确定其对纯化Rubisco的结合亲和力。结果产生了两个分类组:一个具有高结合亲和力(这些物种包括金藻、硅藻、定鞭藻和绿藻),另一个具有低结合亲和力(甲藻和蓝藻)。对于硅藻培养物,每个细胞的Rubisco浓度与光合光饱和速率高度相关。这些结果表明,亲和纯化的抗血清可得到严格表征,用于定量Rubisco浓度以及评估单个浮游植物细胞的最大光合潜力。