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Rubisco 动力学和淀粉核形态在塑造甲藻微藻的 CCM 中的作用。

The role of Rubisco kinetics and pyrenoid morphology in shaping the CCM of haptophyte microalgae.

机构信息

University of Oxford, Department of Earth Sciences, South Parks Road, Oxford OX1 3AN, UK.

University of Washington, School of Oceanography, Seattle, WA 98195, USA.

出版信息

J Exp Bot. 2017 Jun 1;68(14):3959-3969. doi: 10.1093/jxb/erx179.

Abstract

The haptophyte algae are a cosmopolitan group of primary producers that contribute significantly to the marine carbon cycle and play a major role in paleo-climate studies. Despite their global importance, little is known about carbon assimilation in haptophytes, in particular the kinetics of their Form 1D CO2-fixing enzyme, Rubisco. Here we examine Rubisco properties of three haptophytes with a range of pyrenoid morphologies (Pleurochrysis carterae, Tisochrysis lutea, and Pavlova lutheri) and the diatom Phaeodactylum tricornutum that exhibit contrasting sensitivities to the trade-offs between substrate affinity (Km) and turnover rate (kcat) for both CO2 and O2. The pyrenoid-containing T. lutea and P. carterae showed lower Rubisco content and carboxylation properties (KC and kCcat) comparable with those of Form 1D-containing non-green algae. In contrast, the pyrenoid-lacking P. lutheri produced Rubisco in 3-fold higher amounts, and displayed a Form 1B Rubisco kCcat-KC relationship and increased CO2/O2 specificity that, when modeled in the context of a C3 leaf, supported equivalent rates of photosynthesis to higher plant Rubisco. Correlation between the differing Rubisco properties and the occurrence and localization of pyrenoids with differing intracellular CO2:O2 microenvironments has probably influenced the divergent evolution of Form 1B and 1D Rubisco kinetics.

摘要

甲藻是一类分布广泛的初级生产者,对海洋碳循环有重要贡献,并在古气候研究中发挥重要作用。尽管它们具有全球重要性,但对甲藻的碳同化过程知之甚少,特别是其 1D 型 CO2 固定酶 Rubisco 的动力学特性。在这里,我们研究了三种具有不同淀粉核形态的甲藻(Pleurochrysis carterae、Tisochrysis lutea 和 Pavlova lutheri)和一种具有相反的 CO2 和 O2 亲和力(Km)和周转率(kcat)之间权衡敏感性的硅藻 Phaeodactylum tricornutum 的 Rubisco 特性。含有淀粉核的 T. lutea 和 P. carterae 的 Rubisco 含量和羧化特性(KC 和 kCcat)较低,与含有 1D 型的非绿藻相当。相比之下,缺乏淀粉核的 P. lutheri 产生的 Rubisco 含量高出 3 倍,并且表现出 1B 型 Rubisco 的 kCcat-KC 关系和增加的 CO2/O2 特异性,当在 C3 叶的背景下建模时,支持与高等植物 Rubisco 相当的光合作用速率。Rubisco 特性的差异以及淀粉核的发生和定位与不同的细胞内 CO2:O2 微环境之间的相关性,可能影响了 1B 和 1D Rubisco 动力学的不同进化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e491/5853415/ef2ac3429e37/erx17901.jpg

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