Utilization of spare substances of Zea mays L. seeds during germination under the combined effect of growth regulators and presence or absence of light

V. Kuryata, B. Kuts, Yuriy Prysedsky
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Abstract

2 Vasyl Stus Donetsk National University, 600-richya St., 21, Vinnytsia 21021, Ukraine Functional changes in the source-sink system of maize sprouts under combination of external (light/dark) and hormonal (gibberellic acid/retardant) factors during germination were studied. It was found that the phytohormone action significantly increased the coleoptile, root and seedling length, dry matter mass of organs, both in light and in dark. Tebuconazole caused the opposite effect due to its retardant action. The inactivation of endogenous phytohormone was confirmed by less intensive use of seed substances, the minimum dry matter of root and coleoptile and lower reserve utilization rates under tebuconazole influence, in particular under photomorphogenesis condition. The non-maximum mass of cotyledons may indicate a kind of optimization of use of reserves under tebuconazole treatment. Gibberellin stimulated starch breakdown in both light and dark, but starch usage was higher in dark. The lower content of sugar in the seeds of skotomorphic plants in control and under gibberellin action was explained by intense outflow for the organogenesis needs. Gibberellin stimulated the hydrolysis of reserve protein after intensive starch hydrolysis in dark. Specific gibberellin regulation of phosphorus outflow for the organogenesis processes under the photoand skotomorphogenesis conditions and no regulation for potassium under photomorphogenesis conditions were found.
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生长调节剂和光照条件下玉米种子萌发过程中备用物质的利用
研究了外部(光/暗)和激素(赤霉素/阻燃剂)因素联合作用下玉米芽源库系统在萌发过程中的功能变化。结果表明,在光照和光照条件下,激素的作用显著增加了胚芽组织、根和苗的长度以及各器官的干物质质量。戊康唑由于其阻燃作用而产生相反的效果。内源植物激素失活的证据是,在戊唑唑的影响下,种子物质的利用强度降低,根和胚芽的干物质最低,储备利用率降低,特别是在光形态形成条件下。子叶的非最大质量可能是戊康唑处理下储量利用的一种优化。赤霉素在光照和黑暗条件下均能促进淀粉的分解,但在黑暗条件下淀粉的利用率更高。在控制和赤霉素作用下,瘦型植物的种子中糖含量较低,这可以解释为器官发生需要的大量流出。赤霉素促进了淀粉在黑暗条件下剧烈水解后储备蛋白的水解。赤霉素对光形态和脑形态形成条件下器官发生过程中磷的流出有特定的调节作用,对光形态形成条件下钾的流出没有调节作用。
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