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Simulation of plant growth manipulation using rule based inference and C4.5 algorithm

机译:基于规则推理和C4.5算法的植物生长操纵模拟

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The growth process of a flowering plant can be manipulated by treating on its genes and controlling its exogenous factors. This manipulation is aimed for specific reason, for example: to accelerate the flowering process, to lengthen juvenility, or to regenerate certain parts of the flower. Biology molecular researcher used to do this manipulation in a costly research and it usually takes a long period to watch its impact on a plant. A system is developed to simulate vegetative and generative growth process of a plant when its exogenous factors and genes are controlled. The vegetative system uses rules generated using C4.5 algorithm and gives 100% accuracy when SN DNE and HR are both active. When one of SN DNE and HR is nonactive, the rules are no longer accurate and generated manually. The generative system uses rules based inference. It predicts the effect of controlling the level of genes and exogenous factors. It can be estimated whether the plant would produce flowers, become sterile, stay juvenile or even die. The system is also able to predict the shape of the flower, whether it would be a perfect flower or inactive in some part of the flower.
机译:开花植物的生长过程可以通过对其基因进行处理并控制其外源因子来控制。这种操作的目的是出于特定的原因,例如:加快开花过程,延长幼年期或使花的某些部分再生。生物分子研究人员过去常常在一项昂贵的研究中进行这种操作,并且通常需要很长时间才能观察到其对植物的影响。当控制植物的外源因子和基因时,可以开发一种系统来模拟植物的营养生长和生殖生长过程。植被系统使用C4.5算法生成的规则,并且当SN DNE和HR都处于活动状态时,其准确性为100%。当SN DNE和HR之一处于非活动状态时,规则将不再准确且无法手动生成。生成系统使用基于规则的推理。它预测了控制基因和外源因子水平的效果。可以估计植物是否会开花,变得不育,保持幼年甚至死亡。该系统还能够预测花朵的形状,无论是完美的花朵还是花朵的某些部分不活跃。

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