Growth and nitrogen accumulation assessment of banana (Musa acuminata) after exposure to hydroquinone in a charcoal-ultisol mix

B. Ikhajiagbe, Marychoice N. Ebinum
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Abstract

The present study investigates plant growth and nitrogen accumulation assessment of young banana plant (Musa acuminata) after exposure to hydroquinone (a mutagen) in a charcoal-ultisol mix. Charcoal was obtained from the wood of Pentaclethra macrophylla aerobically, and was crushed into a smooth powdered form. This was mixed with an ultisol obtained from the University of Benin Botanic garden. Different levels of the soil-charcoal mix were prepared as follows; 100% charcoal, 75% charcoal-25% soil, 50% charcoal-50% soil, 25% charcoal- 75% soil, and 100% sand. The charcoal-ultisol mix was then amended with 5ppm hydroquinone one week before propagating young banana suckers. Results showed that sprouting began fifteen days after propagation. There were also different changes in plant height in the various soil treatments; the lowest was reported in the 75-25 charcoal ultisol mix (10.50cm), compared to 45.83cm in plants sown in 100% charcoals. Foliar yield was lowest in the 75-25 charcoal-ultisol mix (8.55 grams per plant), compared to 29.15 grams per plant in the 100% charcoal. The below ground morphological characteristics test plant revealed that there were significant differences between the growth parameters. Nitrate nitrogen, Ammonia Nitrogen and total nitrogen were significantly accumulated on the leaves of plant. However, higher nitrogen accumulation in the leaves was found in treatment with high charcoal percentage.
炭-多酚混合物中对苯二酚对香蕉生长和氮素积累的影响
本研究研究了暴露于炭素-多酚混合物中对苯二酚(一种诱变剂)对香蕉幼苗生长和氮积累的影响。木炭是由大叶五肢草(Pentaclethra macrophylla)的木材中有氧获得的,并被粉碎成光滑的粉末形式。这是与从贝宁大学植物园获得的终极溶胶混合。不同水平的土壤-木炭混合配制如下:100%木炭,75%木炭-25%土壤,50%木炭-50%土壤,25%木炭- 75%土壤,100%沙子。然后在香蕉幼苗繁殖前一周用5ppm对苯二酚对炭-多酚混合物进行修正。结果表明,繁殖15天后开始发芽。不同土壤处理的株高变化也不同;据报道,75-25木炭多酚混合物中最低(10.50cm),而100%木炭播种的植株为45.83cm。75-25炭-多酚混合的叶片产量最低(8.55克/株),而100%炭混合的叶片产量为29.15克/株。地下形态特征试验植株的生长参数差异显著。硝态氮、氨态氮和全氮在植株叶片上积累显著。然而,高炭含量处理的叶片氮积累量较高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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