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Mitochondrial energy metabolism in young bamboo rhizomes from Bambusa oldhamii and Phyllostachys edulis during shooting stage

机译:竹(Bambusa oldhamii)和毛竹(Phyllostachys edulis)幼竹根茎线粒体能量代谢阶段

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The energy metabolism of mitochondria in young rhizomes of the bamboo species Bambusa oldhamii, which favors shooting during the summer, and Phyllostachys edulis, which favors shooting during the winter, was characterized. The mitochondrial energy-converting system was clarified in terms of respiratory activity and structural organization. The respiration rates were measured at 15, 28, and 42 °C by NADH, succinate, and malate oxidation. NADH was shown to act as an efficient substrate regardless of the temperature. The structural organization of functional mitochondrial respiratory supercomplexes was studied using blue native PAGE and in-gel activity staining. In both species, almost 90% of the total complex I was assembled into supercomplexes, and P. edulis contained a greater amount of complex-I-comprising supercomplexes than B. oldhamii. Approximately 50% of complex III and 75% of complex V were included in supercomplexes, whereas P. edulis mitochondria possessed a greater amount of complex-V-comprising supercomplexes. The alternative oxidase (AOX), plant mitochondrial uncoupling protein (PUCP), plant mitochondrial potassium channel (PmitoK_(ATP)), rotenone-insensitive external/internal NADH:ubiquinone oxidoreductase [NDH(e/i)], and superoxide dismutase (SOD) activities of the energy-dissipating systems were investigated. P. edulis mitochondria had higher levels of the PUCP1 and AOX1 proteins than B. oldhamii mitochondria. The activity of PmitoK_(ATP) in P. edulis was higher than that in B. oldhamii. However, P. edulis mitochondria possessed lower NDH(e/i) and SOD activities than B. oldhamii mitochondria. The results suggest that the adaptation of P. edulis to a cooler environment may correlate with its greater abundance of functional mitochondrial supercomplexes and the higher energy-dissipating capacity of its AOX, PUCP and PmitoK_(ATP) relative to B. oldhamii.
机译:表征了竹种Bambusa oldhamii的幼根茎中的线粒体能量代谢,其在夏季有利于射击,而可食的毛竹(Phyllostachys edulis)则在冬季有利于射击。线粒体能量转换系统在呼吸活动和结构组织方面得到了阐明。通过NADH,琥珀酸和苹果酸氧化在15、28和42°C下测量呼吸频率。无论温度如何,NADH均可作为有效的底物。使用蓝色天然PAGE和凝胶内活性染色研究功能性线粒体呼吸超复合物的结构组织。在这两个物种中,总复合物I的几乎90%被组装成超级复合物,而食用假单胞菌所含的包含复合物I的超级复合物的数量要比B. oldhamii大。超级复合物中包括约50%的复合物III和75%的复合物V,而可食假单胞菌线粒体具有大量的含复合物V的超复合物。替代氧化酶(AOX),植物线粒体解偶联蛋白(PUCP),植物线粒体钾通道(PmitoK_(ATP)),鱼藤酮不敏感的外部/内部NADH:泛醌氧化还原酶[NDH(e / i)]和超氧化物歧化酶(SOD) )研究了耗能系统的活动。食用假单胞菌的线粒体的PUCP1和AOX1蛋白水平高于B. oldhamii线粒体。食用假单胞菌中PmitoK_(ATP)的活性高于B. oldhamii中的。然而,可食假单胞菌线粒体的NDH(e / i)和SOD活性均低于B. oldhamii线粒体。结果表明,相对于oldhamii,可食蓝藻适应较凉的环境可能与其功能性线粒体超复合物的丰度更高,以及其AOX,PUCP和PmitoK_(ATP)的较高耗能能力有关。

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