首页> 外文期刊>The Journal of Horticultural Science & Biotechnology >Changes in leaf size and in the rate of leaf production contribute to cytokinin-mediated growth promotion in Epipremnum aureum L. cuttings.
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Changes in leaf size and in the rate of leaf production contribute to cytokinin-mediated growth promotion in Epipremnum aureum L. cuttings.

机译:叶大小和叶产生速率的变化有助于金黄色葡萄球菌插条中细胞分裂素介导的生长促进。

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The growth of ornamental foliage plants is often limited by pot size, which exerts a restriction on root growth and, therefore, on the production of root-synthesised cytokinins which play key regulatory roles in the development and growth of the shoot. We studied the effect of exogenous 6-benzylaminopurine (BAP) on plant growth and on the development of leaf area in Epipremnum aureum L. plants grown in pots. The hypothesis was that increasing the concentration of shoot cytokinins by foliar spraying of BAP would promote plant growth by overcoming the effects of root restriction on whole plant development. Three glasshouse experiments were conducted using (i) different concentrations of BAP, (ii) different numbers of spray applications, and (iii) different light environments. The results showed that a single spray application of BAP at 5 mg l-1 significantly (P<=0.05) increased leaf area (by 20-40%) and biomass [fresh weight (FW)] accumulation (by 30-35%), while higher BAP concentrations, or repeated spray applications had less effect. The maximum effect of BAP was observed under intermediate levels of irradiance. The increased development of leaf area in BAP-sprayed plants resulted from increases in both individual average leaf areas (by 100-150% cf. the controls) and the rate of leaf initiation (by 30-120% cf. the controls). The latter could be attributed to a shortening of the phyllochron, since no branching was observed under any BAP spray treatment. Alternative physiological explanations, as well as possible commercial applications of these BAP-elicited responses are discussed.
机译:观赏性植物的生长通常受到盆大小的限制,盆大小限制了根的生长,因此限制了根合成的细胞分裂素的生产,而细胞分裂素在枝条的发育和生长中起着关键的调节作用。我们研究了外源6-苄氨基嘌呤(BAP)对植物生长和盆栽金黄色葡萄球菌植物叶片面积的影响。假设是通过叶面喷洒BAP来增加芽苗细胞分裂素的浓度,将克服根系限制对整株植物生长的影响,从而促进植物生长。使用(i)不同浓度的BAP,(ii)不同数量的喷雾应用和(iii)不同的光照环境进行了三个温室实验。结果表明,单次喷洒5 mg l -1 的BAP可以显着(P <= 0.05)增加叶面积(增加20-40%)和生物量[鲜重(FW)]的积累(降低30%至35%),而更高的BAP浓度或重复喷洒的效果则较小。在中等辐照度下观察到了BAP的最大作用。 BAP喷涂植物的叶面积增加是由于单个平均叶面积(相对于对照提高了100-150%)和叶片起始速率(相对于对照增长了30-120%)所致。后者可归因于叶轮节律的缩短,因为在任何BAP喷雾处理下均未观察到分支。讨论了这些BAP引起的反应的替代生理学解释以及可能的商业应用。

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