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首页> 外文期刊>Plant Growth Regulation: An International Journal on Natural and Synthetic Regulators >Ethylene and polyamine interactions in morphogenesis of Passiflora cincinnata: Effects of ethylene biosynthesis and action modulators, as well as ethylene scavengers
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Ethylene and polyamine interactions in morphogenesis of Passiflora cincinnata: Effects of ethylene biosynthesis and action modulators, as well as ethylene scavengers

机译:西番莲形态发生中的乙烯和多胺相互作用:乙烯生物合成和作用调节剂以及乙烯清除剂的影响

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Ethylene is a plant hormone that is of fundamental importance to in vitro morphogenesis, but in many species, it has not been thoroughly studied. Its relationship with polyamines has been studied mainly because the two classes of hormones share a common biosynthetic precursor, S-adenosylmethionine (SAM). In order to clarify whether competition between polyamines and ethylene influences in vitro morphogenetic responses of Passiflora cincinnata Mast., a climacteric species, different compounds were used that act on ethylene biosynthesis and action, or as ethylene scavengers. Treatment with the ethylene inhibitor, aminoethoxyvinylglycine (AVG) caused a greater regeneration frequency in P. cincinnata, whereas treatment with the ethylene precursor, 1-aminocyclopropane-1-carboxylic-acid (ACC) lessened regeneration frequencies. The data suggested that levels of polyamines and ethylene are not correlated with morphogenic responses in P. cincinnata. It was ascertained that neither the absolute ethylene and polyamine levels, nor competition between the compounds, correlated to the obtained morphogenic responses. However, sensitivity to, and signaling by, ethylene appears to play an important role in differentiation. This study reinforces previous reports regarding the requirement of critical concentrations and temporal regulation of ethylene levels for morphogenic responses. Temporal regulation also appeared to be a key factor in competition between the two biosynthetic pathways, without having any effects on morphogenesis. Further studies investigating the silencing or overexpression of genes related to ethylene perception, under the influence of polyamines in cell differentiation are extremely important for the complete understanding of this process.
机译:乙烯是一种植物激素,对体外形态发生至关重要,但在许多物种中,尚未进行深入研究。已经研究了其与多胺的关系,这主要是因为这两类激素共有一个共同的生物合成前体S-腺苷甲硫氨酸(SAM)。为了阐明多胺和乙烯之间的竞争是否会影响更年期种西番莲的体外形态发生反应,使用了不同的化合物来作用于乙烯的生物合成和作用,或用作乙烯清除剂。用乙烯抑制剂氨基乙氧基乙烯基甘氨酸(AVG)处理可在肉桂假单胞菌中产生较大的再生频率,而使用乙烯前体1-氨基环丙烷-1-羧酸(ACC)处理可减少再生频率。数据表明,多胺和乙烯的水平与肉桂假单胞菌的形态发生反应无关。可以确定的是,绝对的乙烯和多胺含量或化合物之间的竞争都与获得的形态发生反应无关。但是,对乙烯的敏感性和信号传导似乎在分化中起重要作用。这项研究加强了以前的报告,有关形态发生反应的临界浓度和乙烯水平的时间调节要求。时间调节似乎也是两个生物合成途径之间竞争的关键因素,而对形态发生没有任何影响。在多胺影响细胞分化的过程中,进一步研究调查与乙烯感知相关的基因的沉默或过度表达对于彻底了解这一过程极为重要。

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