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C4 光合作用单细胞中二氧化碳浓缩机制的效率。

The efficiency of the CO2-concentrating mechanism during single-cell C4 photosynthesis.

机构信息

School of Biological Sciences, Washington State University, Pullman, WA 99164-4236, USA.

出版信息

Plant Cell Environ. 2012 Mar;35(3):513-23. doi: 10.1111/j.1365-3040.2011.02431.x. Epub 2011 Oct 24.

Abstract

The photosynthetic efficiency of the CO(2)-concentrating mechanism in two forms of single-cell C(4) photosynthesis in the family Chenopodiaceae was characterized. The Bienertioid-type single-cell C(4) uses peripheral and central cytoplasmic compartments (Bienertia sinuspersici), while the Borszczowioid single-cell C(4) uses distal and proximal compartments of the cell (Suaeda aralocaspica). C(4) photosynthesis within a single-cell raises questions about the efficiency of this type of CO(2) -concentrating mechanism compared with the Kranz-type. We used measurements of leaf CO(2) isotope exchange (Δ(13) C) to compare the efficiency of the single-cell and Kranz-type forms of C(4) photosynthesis under various temperature and light conditions. Comparisons were made between the single-cell C(4) and a sister Kranz form, S. eltonica[NAD malic enzyme (NAD ME) type], and with Flaveria bidentis[NADP malic enzyme (NADP-ME) type with Kranz Atriplicoid anatomy]. There were similar levels of Δ(13) C discrimination and CO(2) leakiness (Φ) in the single-cell species compared with the Kranz-type. Increasing leaf temperature (25 to 30 °C) and light intensity caused a decrease in Δ(13) C and Φ across all C(4) types. Notably, B. sinuspersici had higher Δ(13) C and Φ than S. aralocaspica under lower light. These results demonstrate that rates of photosynthesis and efficiency of the CO(2) -concentrating mechanisms in single-cell C(4) plants are similar to those in Kranz-type.

摘要

研究了藜科两种单细胞 C4 光合作用形式的 CO2 浓缩机制的光合效率。Bienertioid 型单细胞 C4 使用周围和中央细胞质隔室(Bienertia sinuspersici),而 Borszczowioid 单细胞 C4 使用细胞的远端和近端隔室(Suaeda aralocaspica)。单细胞内的 C4 光合作用引发了关于这种 CO2 浓缩机制效率的问题,与 Kranz 型相比如何。我们使用叶片 CO2 同位素交换(Δ13C)的测量来比较不同温度和光照条件下单细胞和 Kranz 型 C4 光合作用的效率。将单细胞 C4 与姐妹 Kranz 形式(Suaeda eltonica[NAD 苹果酸酶(NAD ME)型])进行了比较,并与 Flaveria bidentis[NADP 苹果酸酶(NADP-ME)型与 Kranz Atriplicoid 解剖结构]进行了比较。与 Kranz 型相比,单细胞物种的 Δ13C 歧视和 CO2 渗漏(Φ)水平相似。增加叶片温度(25 至 30°C)和光照强度会导致所有 C4 类型的 Δ13C 和 Φ 降低。值得注意的是,在较低光照下,B. sinuspersici 的 Δ13C 和 Φ 高于 S. aralocaspica。这些结果表明,单细胞 C4 植物的光合作用速率和 CO2 浓缩机制的效率与 Kranz 型相似。

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