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Ethylene Production by Attached Leaves or Intact Shoots of Tobacco Cultivars Differing in Their Speed of Yellowing during Curing 1

机译:不同类型烟叶在烘烤过程中的变黄速度不同,其附着叶片或完整芽所产生的乙烯1

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摘要

Using an open air flow system, differences in the yellowing rate of leaves during curing were assessed in relation to ethylene production by shoots of intact seedlings or attached mature leaves of 60 day old tobacco (Nicotiana tabacum L.) plants. The rate of ethylene evolution from the leaves of the fast yellowing cultivars was significantly higher than in the slow yellowing ones. The same differences were obtained with shoots of intact seedlings. The findings suggest that it is possible to use ethylene production by seedlings as a selection criterion in screening for genotypic differences in the rate of yellowing. The ability of carbon dioxide (1%) to enhance ethylene production by attached leaves was significant in a slow, but not in a fast yellowing cultivar. However, similar amounts of ethylene were produced on administration of 1-aminocyclopropane-1-carboxylic acid to a slow and a fast yellowing cultivar. Exposure of attached leaves to exogenous ethylene (0.1 microliter per liter) accelerated the loss of chlorophyll and protein. This treatment was effective only for slightly yellow leaves and not for fully expanded green ones. The significance and possible use of ethylene in the flue-curing process are discussed.
机译:使用露天气流系统,评估了60天龄烟草(Nicotiana tabacum L.)植物的完整幼苗或附着的成熟叶片的芽与乙烯生产相关的硫化过程中叶片变黄率的差异。快黄变种叶片中乙烯的释放速率显着高于慢黄变种叶片。完整幼苗的芽也有相同的差异。这些发现表明,有可能利用幼苗生产的乙烯作为筛选泛黄速率的基因型差异的选择标准。二氧化碳(1%)通过附着的叶子增强乙烯产量的能力在慢速变黄品种中很明显,但在快速变黄品种中却不明显。然而,将1-氨基环丙烷-1-羧酸施用至慢速和快速泛黄品种后,会产生相似量的乙烯。附着的叶子暴露于外源乙烯(每升0.1微升)会加速叶绿素和蛋白质的损失。此处理仅对淡黄色的叶子有效,而对完全展开的绿色叶子无效。讨论了乙烯在烟道气固化过程中的意义和可能的用途。

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