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红色Rubiscos 与工程绿色植物的机会。

Red Rubiscos and opportunities for engineering green plants.

机构信息

Plant Biology Section, School of Integrative Plant Science, Cornell University, Ithaca, NY, USA.

Department of Cell and Molecular Biology, Uppsala University, S-751 24 Uppsala, Sweden.

出版信息

J Exp Bot. 2023 Jan 11;74(2):520-542. doi: 10.1093/jxb/erac349.

Abstract

Nature's vital, but notoriously inefficient, CO2-fixing enzyme Rubisco often limits the growth of photosynthetic organisms including crop species. Form I Rubiscos comprise eight catalytic large subunits and eight auxiliary small subunits and can be classified into two distinct lineages-'red' and 'green'. While red-type Rubiscos (Form IC and ID) are found in rhodophytes, their secondary symbionts, and certain proteobacteria, green-type Rubiscos (Form IA and IB) exist in terrestrial plants, chlorophytes, cyanobacteria, and other proteobacteria. Eukaryotic red-type Rubiscos exhibit desirable kinetic properties, namely high specificity and high catalytic efficiency, with certain isoforms outperforming green-type Rubiscos. However, it is not yet possible to functionally express a high-performing red-type Rubisco in chloroplasts to boost photosynthetic carbon assimilation in green plants. Understanding the molecular and evolutionary basis for divergence between red- and green-type Rubiscos could help us to harness the superior CO2-fixing power of red-type Rubiscos. Here we review our current understanding about red-type Rubisco distribution, biogenesis, and sequence-structure, and present opportunities and challenges for utilizing red-type Rubisco kinetics towards crop improvements.

摘要

自然界中固碳效率低下的关键酶 Rubisco 通常会限制包括农作物在内的光合生物的生长。Rubisco 由八个催化大亚基和八个辅助小亚基组成,可分为两个不同的谱系——“红色”和“绿色”。红藻中的 Rubisco(Form IC 和 ID)属于红型 Rubisco,而其共生菌和某些 Proteobacteria 则含有绿型 Rubisco(Form IA 和 IB)。陆地植物、绿藻、蓝藻和其他 Proteobacteria 中则存在绿型 Rubisco。真核生物红型 Rubisco 表现出理想的动力学特性,即高特异性和高催化效率,某些同工酶的性能优于绿型 Rubisco。然而,目前还无法在叶绿体中功能性表达高性能的红型 Rubisco,以提高绿色植物的光合作用碳同化效率。了解红型和绿型 Rubisco 之间的分子和进化差异,有助于我们利用红型 Rubisco 的卓越固碳能力。本文综述了我们对红型 Rubisco 分布、生物发生和序列结构的现有认识,并提出了利用红型 Rubisco 动力学特性来改善作物的机遇和挑战。

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