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Selective Enhancement of Alternative Path Capacity in Plant Storage Organs in Response to Ethylene Plus Oxygen: A Comparative Study

机译:选择性增强植物储存器官对乙烯和氧气的替代路径容量:一项比较研究

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摘要

The respiration rise in bulky storage organs induced by ethylene plus pure O2 is accompanied by an increase in the CN-resistant respiration, or alternative path. Whereas a lesser respiratory stimulation in response to ethylene is demonstrable in air and increased by peeling, ethylene-induced alternative path development depends on the synergistic effect of pure O2, with or without peeling. The effect of ethylene plus O2 is evident, whether untreated parent organs yield CN-sensitive or CN-resistant fresh slices. Alternative path capacity and maximal cytochrome oxidase-mediated electron transport have been separately estimated. Ethylene plus O2 selectively enhances the alternative path. It is proposed that the gross rise in respiration evoked by ethylene is implemented by a system with an O2 requirement much higher than that of cytochrome oxidase, while the ethylene-induced development of the alternative path depends on a system of still higher O2 requirement.
机译:由乙烯加纯O2诱导的大体积储存器官的呼吸上升伴随着抗CN呼吸或其他途径的增加。尽管在空气中表现出较少的对乙烯的呼吸刺激并通过脱皮增加了刺激,但是乙烯诱导的替代途径的发展取决于有或没有脱皮的纯氧气的协同作用。无论未处理的亲代器官是否产生对CN敏感或对CN耐药的新鲜切片,乙烯加O2的作用都是显而易见的。替代路径容量和最大细胞色素氧化酶介导的电子传输已分别估计。乙烯加O2选择性地增强了替代途径。有人提出,由乙烯引起的呼吸的总体上升是通过一个对氧气的需求远远高于细胞色素氧化酶的系统来实现的,而乙烯诱导的替代途径的发展取决于对氧气的更高需求的系统。

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