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Cold Tolerance of C4 photosynthesis in Miscanthus × giganteus: Adaptation in Amounts and Sequence of C4 Photosynthetic Enzymes

机译:芒草C4光合作用的耐寒性:数量和顺序的适应 C4光合 酵素

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摘要

Field-grown Miscanthus × giganteus maintains high photosynthetic quantum yields and biomass productivity in cool temperate climates. It is related to maize (Zea mays) and uses the same NADP-malic enzyme C4 pathway. This study tests the hypothesis that M. × giganteus, in contrast to maize, forms photosynthetically competent leaves at low temperatures with altered amounts of pyruvate orthophosphate dikinase (PPDK) and Rubisco or altered properties of PPDK. Both species were grown at 25°C/20°C or 14°C/11°C (dayight), and leaf photosynthesis was measured from 5°C to 38°C. Protein and steady-state transcript levels for Rubisco, PPDK, and phosphoenolpyruvate carboxylase were assessed and the sequence of C4-PPDK from M. × giganteus was compared with other C4 species. Low temperature growth had no effect on photosynthesis in M. × giganteus, but decreased rates by 80% at all measurement temperatures in maize. Amounts and expression of phosphoenolpyruvate carboxylase were affected little by growth temperature in either species. However, PPDK and Rubisco large subunit decreased >50% and >30%, respectively, in cold-grown maize, whereas these levels remained unaffected by temperature in M. × giganteus. Differences in protein content in maize were not explained by differences in steady-state transcript levels. Several different M. × giganteus C4-PPDK cDNA sequences were found, but putative translated protein sequences did not show conservation of amino acids contributing to cold stability in Flaveria brownii C4-PPDK. The maintenance of PPDK and Rubisco large subunit amounts in M. × giganteus is consistent with the hypothesis that these proteins are critical to maintaining high rates of C4 photosynthesis at low temperature.
机译:在凉爽的温带气候下,田间生长的芒草(Miscanthus×giganteus)保持较高的光合量子产率和生物量生产力。它与玉米(Zea mays)有关,并使用相同的NADP-苹果酸酶C4途径。这项研究检验了以下假设:与玉米相反,M。×giganteus在低温下形成丙酮酸正磷酸二激酶(PPDK)和Rubisco量改变或PPDK性质改变的光合作用叶片。两种物种均在25°C / 20°C或14°C / 11°C(白天/晚上)下生长,并在5°C至38°C下测量了叶片的光合作用。评估了Rubisco,PPDK和磷酸烯醇丙酮酸羧化酶的蛋白质和稳态转录水平,并将M.×giganteus的C4-PPDK序列与其他C4物种进行了比较。低温生长对M.×giganteus的光合作用没有影响,但是在所有测量温度下,玉米的光合作用降低了80%。两种物种中的生长温度对磷酸烯醇丙酮酸羧化酶的量和表达几乎没有影响。但是,PPDK和Rubisco大亚基 冷增长的玉米分别下降了> 50%和> 30%,而 这些水平不受M温度的影响。× 巨人。没有解释玉米蛋白质含量的差异 稳态成绩单水平的差异。几种不同 M.×giganteus C4-PPDK cDNA序列 发现,但推定的翻译蛋白序列未显示保守性 布朗尼C4-PPDK中有助于冷稳定性的氨基酸。 PPDK和Rubisco大亚基数量的维护 在 M。× giganteus 中与假设一致 这些蛋白质对于在低温下维持高速率的C4光合作用至关重要。

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