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无融合生殖期的埃及无花果果实乙烯形成的自动抑制。

Autoinhibition of Ethylene Formation in Nonripening Stages of the Fruit of Sycomore Fig (Ficus sycomorus L.).

机构信息

Department of Botany, Tel Aviv University, The Dr. George S. Wise Center for Life Sciences, Tel Aviv, Israel.

出版信息

Plant Physiol. 1976 Apr;57(4):647-50. doi: 10.1104/pp.57.4.647.

Abstract

Differences in the mechanism of ethylene emanation of Ficus sycomorus L. during various stages of the fruit development were investigated by enclosing the figs in jars. Two distinct patterns of ethylene emanation were found. Pattern a. in stages not capable of ripening, neither spontaneously nor as a result of physiological treatment (nonripening stages A and C), ethylene concentration in the jar increased linearly for a short time and then remained constant. Pattern b. in stages capable of ripening (ripening stages B, D, and E), the linear increase in ethylene concentration continued for the entire period of measurement. In nonripening stages, ethylene emanation stopped when ethylene concentration in the jar reached a constant value (0.6 mul/l at stage C). Aeration of the figs and the jar renewed ethylene emanation. CO(2) concentration in the jar never exceeded 0.5%. Treatment of stage C figs with 0.6 to 10 mul/l exogenous ethylene caused immediate and complete cessation of ethylene emanation whereas the same treatment did not cause any change in rate of ethylene emanation from figs at the ripening stages B and D. Gashing (wounding) of stage C figs temporarily changed the pattern of ethylene emanation from pattern a to pattern b.We concluded that in the nonripening stages ethylene acts as an autoinhibitor of its own production but this does not occur in the ripening stages.

摘要

我们用密封罐的方法研究了榕果在不同发育阶段乙烯释放机制的差异。发现了两种截然不同的乙烯释放模式。模式 A. 在不能成熟的阶段,无论是自发的还是生理处理的结果(非成熟阶段 A 和 C),罐内乙烯浓度短时间内呈线性增加,然后保持恒定。模式 B. 在可以成熟的阶段(成熟阶段 B、D 和 E),乙烯浓度的线性增加持续整个测量期。在非成熟阶段,当罐内乙烯浓度达到恒定值(C 阶段 0.6 微升/升)时,乙烯释放停止。榕果和罐子的通气使乙烯重新释放。罐子内的 CO2 浓度从未超过 0.5%。用 0.6 至 10 微升/升外源乙烯处理 C 阶段的榕果会立即完全停止乙烯释放,而相同的处理不会引起 B 和 D 成熟阶段的榕果乙烯释放率发生任何变化。C 阶段榕果的刻伤(创伤)暂时将乙烯释放模式从模式 A 转变为模式 B。我们得出结论,在非成熟阶段,乙烯作为自身产生的自动抑制剂,但在成熟阶段则不会。

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