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乙烯和二氧化碳对马铃薯代谢的影响:刺激块茎和线粒体呼吸,并诱导替代途径。

Effect of ethylene and carbon dioxide on potato metabolism: stimulation of tuber and mitochondrial respiration, and inducement of the alternative path.

机构信息

Department of Biology and Molecular Biology Institute, University of California, Los Angeles, California 90024.

出版信息

Plant Physiol. 1978 Nov;62(5):820-5. doi: 10.1104/pp.62.5.820.

Abstract

The respiration of potato tubers (Solanum tuberosum var. Russet Burbank) which have been kept at room temperature for 10 days is stimulated upon subsequent treatment with C(2)H(4) (10 microliters per liter) and O(2). The respiratory rise reaches a peak in 24 to 30 hours and thereafter declines. Coincident with the rise in tuber respiration is an increase in the respiratory rates of fresh slices and isolated mitochondria. Slices and mitochondria from C(2)H(4)- and O(2)-treated tubers also display substantial resistance to CN, and the resistant respiration is inhibited by hydroxamates.The longer the tubers are stored after harvest, the less effective is C(2)H(4) in causing CN resistance in slices and mitochondria from treated tubers. Addition of 10% CO(2) to the C(2)H(4)-O(2) mixture, however, causes extensive CN resistance to develop, even in slices and mitochondria from old tubers. The results show that C(2)H(4), O(2), and CO(2) act synergistically to induce alternative path development in potatoes.

摘要

将在室温下保存 10 天的马铃薯块茎(Solanum tuberosum var. Russet Burbank)用 C(2)H(4)(10 微升/升)和 O(2)处理后,其呼吸作用会被刺激。呼吸上升在 24 至 30 小时达到峰值,然后下降。与块茎呼吸上升同时发生的是新鲜切片和分离的线粒体呼吸速率的增加。用 C(2)H(4)和 O(2)处理的块茎的切片和线粒体也表现出对 CN 的高抗性,并且羟肟酸盐抑制了抗性呼吸。收获后块茎储存的时间越长,C(2)H(4)在处理过的块茎的切片和线粒体中引起 CN 抗性的效果越差。然而,将 10%的 CO(2)添加到 C(2)H(4)-O(2)混合物中,即使在来自老块茎的切片和线粒体中,也会引起广泛的 CN 抗性的发展。结果表明,C(2)H(4)、O(2)和 CO(2)协同作用诱导马铃薯中替代途径的发展。

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Cyanide-resistant Respiration of Sweet Potato Mitochondria.甘薯线粒体抗氰呼吸。
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