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Investigation of Local Ethylene Emission from Intact Cherry Tomatoes by Means of Photothermal Deflection and Photoacoustic Detection.

机译:通过光热偏转和光声检测研究完整樱桃番茄中的局部乙烯排放。

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摘要

The function of the coronet region of the cherry tomato (Lycopersicon esculentum Cherry) as the main emission channel for ethylene was investigated. Ethylene was measured employing two laser-based detection systems, the photothermal deflection instrument and the photoacoustic detection setup. It is possible to detect minimum ethylene concentrations of 1 nL L-1 locally and rapidly with the first instrument and concentrations of 6 pL L-1 in a continuous flow system with the second setup. The continuous flow system makes it possible to change the air composition and to monitor its influence on the ethylene production of the tomato. The response times of the two instruments are 30 s and 4 min, respectively. The local character of the measurements makes it possible to determine the emission sites of the gaseous plant hormone ethylene and their relative importance. Transient anoxic conditions stop production of ethylene; return to aerobic conditions shows the evolution of the accumulated ethylene precursor 1-aminocyclopropane-1-carboxylic acid and its renewed production on the measured ethylene emission, with a time resolution of several minutes. Temporarily sealing the main emission channel yields results comparable to anoxia.
机译:研究了樱桃番茄(Lycopersicon esculentum Cherry)的冠状区域作为乙烯主要排放通道的功能。使用两个基于激光的检测系统,光热偏转仪和光声检测装置来测量乙烯。使用第一台仪器可以本地快速检测出最低的1 nL L-1乙烯浓度,而使用第二台仪器则可以连续流系统检测6 pL L-1浓度。连续流系统使得可以改变空气成分并监测其对番茄乙烯产量的影响。两台仪器的响应时间分别为30秒和4分钟。测量的局部特征使得可以确定气态植物激素乙烯的排放位置及其相对重要性。瞬态缺氧条件阻止了乙烯的生产;返回到有氧条件可显示出累积的乙烯前体1-氨基环丙烷-1-羧酸的演化过程以及在测得的乙烯排放量上的更新生产,其时间分辨率为几分钟。暂时封闭主要排放通道可产生与缺氧相当的结果。

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