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Characteristics of Ethylene Biosynthesis-Inducing Xylanase Movement in Tobacco Leaves

机译:乙烯生物合成诱导烟叶中木聚糖酶运动的特征

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摘要

125I-Labeled ethylene biosynthesis-inducing xylanase (EIX) was used to study the movement of this protein in tobacco (Nicotiana tabacum) tissues. A biologically active 125I-labeled EIX was obtained using chloramine-T as the oxidizing agent. Labeled EIX was detected in the far most edges of the leaf 5 min after it was applied to the petiole of a detached leaf. EIX was distributed uniformly throughout the leaf, including the mesophyll area within 5 to 15 min, after which there was only little change in the distribution of radioactivity in the leaf. 125I-Labeled EIX was extracted from treated leaves, and EIX translocation in the leaf was blocked by preincubation of labeled EIX with anti-EIX antibodies, indicating that the intact peptide moves in the leaf. Injection of anti-EIX antibodies into the intercellular spaces of the leaf mesophyll prevented induction of necrosis by EIX, suggesting the mesophyll as the site of EIX action. EIX was translocated both to upper and lower parts of the plant when applied to a whole plant through the petiole of a cut leaf. Radioactivity was found in all leaves and in the stem, although some leaves accumulated much more EIX than others; EIX was not found in the roots. There was no difference between the accumulation pattern of EIX in fresh and ethylene-treated leaves or between sensitive (Xanthi) and insensitive (Hicks) tobacco cultivars. These data support the hypothesis that intact EIX protein is translocated to the leaf mesophyll, where it directly elicits plant defense responses.
机译: 125 I-I-标记的乙烯生物合成诱导木聚糖酶(EIX)研究该蛋白在烟草(Nicotiana tabacum)组织中的运动。使用氯胺-T作为氧化剂,获得了具有生物活性的125 sI标记的EIX。将标记的EIX应用于离体叶片的叶柄后5分钟,在叶片的最远边缘检测到。 EIX在5到15分钟内均匀分布在整个叶片中,包括叶肉区域,此后叶片中放射性的分布变化很小。从处理过的叶子中提取 125 I标签的EIX,并通过将标记的EIX与抗EIX抗体进行预温育来阻止EIX在叶中的易位,表明完整的肽在叶中移动。将抗EIX抗体注射到叶片叶肉的细胞间空间可防止EIX诱导坏死,提示叶肉是EIX作用的部位。当通过切叶的叶柄施用于整株植物时,EIX会转移到植物的上部和下部。在所有叶片和茎中都发现了放射性,尽管有些叶片比其他叶片积累了更多的EIX。在根目录中找不到EIX。在新鲜和经乙烯处理的叶片中,EIX的积累模式之间以及敏感的(Xanthi)和不敏感的(Hicks)烟草品种之间均没有差异。这些数据支持以下假设:完整的EIX蛋白易位至叶肉叶,在那里直接引发植物防御反应。

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