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Optimal and Spatial Analysis of Hormones, Degrading Enzymes and Isozyme Profiles in Tomato Pedicel Explants During Ethylene-Induced Abscission

机译:乙烯诱导脱落过程中番茄花梗植株激素,降解酶和同工酶谱的最佳空间分析

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摘要

Activities of degrading enzymes, hormones concentration and zymogram patterns were investigated during control and ethylene-induced abscission of tomato pedicel explants. Exogenous ethylene accelerated abscission of pedicel explants. It was showed that IAA concentration in abscission zone tended to decline at first and then was reduced before separation in control and ethylene-treatment. Moreover, IAA (indole acetic acid) and ABA (abscise acid) concentrations were elevated in each segment when exposing to ethylene, but GA1 + 3 (gibberellin1 + gibberellin3) concentration was decreased in abscission zone and the proximal side. Activities of cellulase, polygalacturonase and pectinesterase in the explants were induced in the separating process and strengthened by ethylene. However, comparing with the proximal side, cellulase and polygalacturonase activities in abscission zone and distal side were higher. Electrophoresis of isozymes revealed that at least three peroxidase and three superoxidase isozymes appeared in the explants, respectively. One peroxidase isozyme exhibited differentially among the three positions in control and ethylene-treatment. One esterase isozyme weakened or disappeared in the following hours, but three novel esterase isozymes were detectable from beginning of the process. The data presented support the hypothesis that the distal side, together with abscission zone of explants plays a more important role in separation than does the proximal side. The possible roles of degrading enzymes, hormones and isozymes in three segments during ethylene-induced abscission of tomato pedicel explants are discussed.
机译:在番茄花梗外植体的控制和乙烯诱导的脱落过程中,研究了降解酶,激素浓度和酶谱图的活性。外源乙烯促进花梗外植体的脱落。结果表明,脱落区IAA的浓度先呈下降趋势,然后在对照和乙烯处理分离之前先降低。此外,暴露于乙烯的各段中IAA(吲哚乙酸)和ABA(己酸)的浓度均升高,而脱落区和近端的GA1 + 3 (赤霉素1 +赤霉素3)浓度降低。外植体中的纤维素酶,聚半乳糖醛酸酶和果胶酯酶的活性在分离过程中被诱导并被乙烯增强。然而,与近端相比,脱落区和远端的纤维素酶和聚半乳糖醛酸酶活性较高。同工酶电泳表明,外植体中至少分别存在三种过氧化物酶和三种过氧化物酶同工酶。在对照和乙烯处理的三个位置中,一种过氧化物酶同工酶表现出差异。在接下来的几个小时中,一种酯酶同工酶减弱或消失,但是从该过程开始就可以检测到三种新型酯酶同工酶。提出的数据支持这样的假说,即远侧以及外植体的脱落区在分离中比近侧更重要。讨论了乙烯诱导的番茄花梗外植体脱落过程中三个部分降解酶,激素和同工酶的可能作用。

著录项

  • 来源
    《Plant Growth Regulation》 |2005年第2期|97-107|共11页
  • 作者单位

    College of Horticulture Shenyang Agricultural UniversityKey Laboratory of the Ministry of Education for Plant Developmental Biology College of Life Sciences Wuhan University;

    College of Horticulture Shenyang Agricultural University;

    College of Agronomy Shenyang Agricultural University;

    College of Animal Husbandry and Veterinary Science Shenyang Agricultural University;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Abscission; Degrading enzymes; Ethylene; Hormones; Isozyme; Tomato;

    机译:脱落;降解酶;乙烯;激素;同工酶;番茄;

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