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首页> 外文期刊>Journal of Plant Growth Regulation >Effect of Gibberellin and Auxin on Parthenocarpic Fruit Growth Induction in the cv Micro-Tom of Tomato
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Effect of Gibberellin and Auxin on Parthenocarpic Fruit Growth Induction in the cv Micro-Tom of Tomato

机译:赤霉素和生长素对番茄cv微型汤中单性结实果实生长的影响

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The effect of applied gibberellin (GA) and auxin on fruit-set and growth has been investigated in tomato (Solarium lycopersicum L.) cv Micro-Tom. It was found that to prevent competition between developing fruits only one fruit per truss should be left on the plant. Unpollinated ovaries responded to GA_3 and to different auxins [indol-3-acetic acid, naphthaleneacetic acid, and 2,4-dichlorophenoxyacetic acid (2,4-D)], 2,4-D being the most efficient. GA_3- and 2,4-D-induced fruits had different internal morphology, with poor locular tissue development in the case of GA, and pseudoembryos development in the case of 2,4-D. Also, GA_3 produced larger cells in the internal region of the mesocarp (IM) associated with higher mean C values, whereas 2,4-D produced more cell layers in the pericarp than pollinated fruits. The smaller size of GA_3-compared with 2,4-D-induced fruits was due to them having fewer cells, only partially compensated by the larger size of IM cells. Simultaneous application of GA_3 and2,4-D produced parthenocarpic fruits similar to pollinated fruits, but for the absence of seeds, suggesting that both kinds of hormones are involved in the induction of fruit development upon pollination. It is concluded that Micro-Tom constitutes a convenient model system, compared to tall cultivars, to investigate the hormonal regulation of fruit development in tomato.
机译:已在Micro-Tom番茄中研究了赤霉素和生长素对番茄坐果和生长的影响。已经发现,为了防止发育果实之间的竞争,每个桁架上只应在植物上留一个果实。未授粉的卵巢对GA_3和不同的生长素[吲哚-3-乙酸,萘乙酸和2,4-二氯苯氧基乙酸(2,4-D)]响应,其中2,4-D最有效。 GA_3-和2,4-D诱导的果实具有不同的内部形态,GA时,其较弱的组织发育,而2,4-D时,则是假胚发育。同样,GA_3在中果皮(IM)的内部区域产生较大的细胞,并具有较高的平均C值,而2,4-D在果皮中产生的细胞层要比授粉的果实多。与2,4-D诱导的果实相比,GA_3-的体积较小,是由于它们具有较少的细胞,而IM细胞的较大尺寸只能部分补偿。同时施用GA_3和2,4-D可以产生与授粉果实相似的单性结实果实,但是由于没有种子,这表明两种激素都在授粉后诱导果实发育。结论是,与高品种相比,Micro-Tom构成了一种方便的模型系统,用于研究番茄果实发育的激素调控。

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