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Temperature responses of Rubisco from Paniceae grasses provide opportunities for improving C-3 photosynthesis

机译:桑科草的Rubisco的温度响应为改善C-3光合作用提供了机会

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Enhancing the catalytic properties of the CO2-fixing enzyme Rubisco is a target for improving agricultural crop productivity. Here, we reveal extensive diversity in the kinetic response between 10 and 37 degrees C by Rubisco from C-3 and C-4 species within the grass tribe Paniceae. The CO2 fixation rate (k(cat)(c)) for Rubisco from the C-4 grasses with nicotinamide adenine dinucleotide (NAD) phosphate malic enzyme (NADP-ME) and phosphoenolpyruvate carboxykinase (PCK) photosynthetic pathways was twofold greater than the k(cat)(c) of Rubisco from NAD-ME species across all temperatures. The declining response of CO2/O-2 specificity with increasing temperature was less pronounced for PCK and NADP-ME Rubisco, which would be advantageous in warmer climates relative to the NAD-ME grasses. Modelled variation in the temperature kinetics of Paniceae C-3 Rubisco and PCK Rubisco differentially stimulated C-3 photosynthesis relative to tobacco above and below 25 degrees C under current and elevated CO2. Amino acid substitutions in the large subunit that could account for the catalytic variation among Paniceae Rubisco are identified; however, incompatibilities with Paniceae Rubisco biogenesis in tobacco hindered their mutagenic testing by chloroplast transformation. Circumventing these bioengineering limitations is critical to tailoring the properties of crop Rubisco to suit future climates.
机译:增强CO 2固定酶的催化性能Rubisco是提高农业作物生产力的目标。在这里,我们揭示了卢维斯科来自草部落Paniceae内C-3和C-4物种在10到37摄氏度之间的动力学响应中的广泛多样性。烟酰胺腺嘌呤二核苷酸(NAD)磷酸苹果酸酶(NADP-ME)和磷酸烯醇丙酮酸羧激酶(PCK)光合作用对C-4草的Rubisco的CO2固定率(k(cat)(c))比k高两倍在所有温度下来自NAD-ME物种的Rubisco(cat)(c)。对于PCK和NADP-ME Rubisco,CO2 / O-2特异性随温度升高而下降的响应不太明显,这相对于NAD-ME草在温暖的气候下将是有利的。在当前和升高的CO2条件下,相对于高于和低于25摄氏度的烟草,Paniceae C-3 Rubisco和PCK Rubisco的温度动力学模型变化差异地刺激了C-3光合作用。确定了大亚基中的氨基酸取代,该氨基酸取代可解释Paniceae Rubisco之间的催化变化。然而,烟草中与Paniceae Rubisco生物发生的不相容性阻碍了通过叶绿体转化进行诱变测试。克服这些生物工程方面的限制对于调整作物Rubisco的特性以适应未来的气候至关重要。

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