赤霉素酸(GA3)对平托花生(Arachis pintoi Krap & Greg)植株生长和制种的影响

Robi Rahmat Dani, J. G. Kartika, Maryati Sari
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引用次数: 0

摘要

平托花生(arachhis pintoi Krap & Greg.)是一种豆科植物,通常用作覆盖作物,水果和蔬菜种植园的生物覆盖物,观赏植物和动物饲料。平托花生有很多好处;通过与根瘤菌的共生,它们可以固定氮,因为地面覆盖可以减少山体滑坡的风险,抑制杂草的生长,并且是蜜蜂的花蜜来源。pintoi Arahcnis可以进行营养繁殖或生殖繁殖,但由于植物需要很长时间才能产生种子,因此在热带地区很难进行生殖繁殖。本试验旨在研究GA3对平托木种子产量的影响。试验采用单因素随机完全区组设计,GA3浓度分别为0、75、150、225和300 ppm。采用正交多项式试验确定了GA3对种子形成和种子活力的有效浓度。将收获的种子储存1个月,然后在砂介质上播种;先用1% KNO3溶液浸泡种子,打破种子休眠。结果表明,GA3有效浓度范围为130.69 ~ 137.16 ppm,在105、120、135和150 DAT处理下,花数比对照增加28.59%。126.80 ppm的GA3也能使收获的豆荚数增加18.16%。GA3对营养生长的影响表现为新单株生长量的增加,施用141.88 ppm时,新单株生长量为53.25。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of Gibberellic Acid (GA3) Application on The Plant Growth and Seed Production of Pinto Peanut (Arachis pintoi Krap & Greg)
Pinto peanut (Arachis pintoi Krap & Greg.) is a legume that is usually used as a cover crop, bio mulch in fruit and vegetable plantations, ornamental plants, and animal feed. Pinto peanut has many benefits; through the symbiosis with rhizobacteria they can fix nitrogen, as ground cover can reduce the risk of landslides, inhibit weed growths, and is a source of nectar for bees. Arahcnis pintoi can be propagated vegetatively or generatively, but generative propagation is hard to conduct in the tropics because it takes a long time for the plants to produce seeds. Our study was conducted to determine the effect of GA3 application on seed production of A. pintoi. The experiment was arranged in a single factor randomized complete block design with GA3 concentration of 0, 75, 150, 225, and 300 ppm. An orthogonal polynomial test was conducted to determine the effective concentrations for GA3 on seed formation and seed viability. Harvested seeds were stored for 1 month, then sown on sand medium; the seeds were soaked in 1% KNO3 solution to break seed dormancy prior. Our study showed that the GA3 effective concentration range from 130.69 ppm to 137.16 ppm, indicated by the increase the number of flowers at 105, 120, 135, and 150 DAT up to 28.59% compared to control. GA3 at 126.80 ppm can also increase the number of harvested pods by 18.16%. The effect of GA3 on vegetative growth was shown by the increase in the growth of new individual plants concentration, i.e. 53.25 new individual plant with GA3 application of 141.88 ppm.
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