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Patterns of Ethylene and Carbon Dioxide Evolution during Cotton Explant Abscission

机译:棉花移栽过程中乙烯和二氧化碳释放的模式

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摘要

The relationship between abscission and the evolution of ethylene and CO2 was examined in explants and explant segments of cotton seedlings (Gossypium hirsutum L. cv. Acala SJ-1) under both static and flow system conditions, and in the presence and absence of mercuric perchlorate. Explant excision was immediately followed by increased ethylene evolution (wound ethylene); senescence was also accompanied by increased ethylene evolution (senescence ethylene). One or two ethylene peaks were found to interrupt the low background rate of ethylene evolution during the period between excision and senescence. The first intermediate ethylene peak coincided with a rise in CO2 evolution; however, precedence could not be established. No statistical correlations were discovered between either intermediate ethylene peak and abscission. The best statistical correlation was found between wound ethylene and abscission at 12 hr after excision. No positive correlations were found between senescence ethylene and abscission. Implications of these results for the understanding of the role of ethylene in explant abscission are discussed.Relationships between a number of different explant treatments and ethylene evolution were also examined. Ethylene production in response to indoleacetic acid applications, abscisic acid applications, and different types of wounding is summarized. It was concluded that the results of the standard abscission bioassay (conducted in Petri dishes) have not been influenced by unnatural ethylene accumulations.
机译:在静态和流动系统条件下,在有无高氯酸汞存在和不存在的条件下,研究了棉花幼苗(Gossypium hirsutum L. cv。Acala SJ-1)的外植体和外植体中脱落与乙烯和CO2释放之间的关系。 。立即进行外植体切除,然后增加乙烯释放量(伤口乙烯);衰老还伴随着乙烯释放的增加(衰老乙烯)。发现一个或两个乙烯峰可在切除和衰老之间中断乙烯进化的低本底速率。乙烯的第一个中间峰与二氧化碳排放量的增加相吻合。但是,无法确定优先级。在中间乙烯峰和脱落之间未发现统计相关性。切除后12小时,伤口乙烯与脱落之间发现了最佳的统计相关性。衰老的乙烯和脱落之间没有发现正相关。讨论了这些结果对理解乙烯在外植体脱落中的作用的意义。还研究了许多不同的外植体处理方法与乙烯进化之间的关系。总结了响应于吲哚乙酸施用,脱落酸施用和不同类型伤口的乙烯生产。结论是,标准的脱落生物测定法(在皮氏培养皿中进行)的结果不受非自然乙烯积累的影响。

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