Bioinspired Optimization of Germination Nutrients Based on Lactuca sativa Seedling Root Traits as Influenced by Seed Stratification, Fortification and Light Spectrums

Ronnie S. Concepcion, E. Dadios
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引用次数: 14

Abstract

Ecophysiological stimulators directly affect root morphology, especially in the embryonic stage. To enhance crop germination, an understanding of the root traits under abiotic inducers is needed. In this study, the combined impacts of white and red-blue light spectrums, cold stratification, and seed fortification involving various concentrations of bioactive chemicals namely simple nutrient addition program solution, gibberellic acid, α-naphthaleneacetic acid with thiamine hydrochloride were evaluated on loose-leaf lettuce (Lactuca sativa var. Altima) seedling root architecture. The growth-promoting effects of these nutrients varied the growth rate and morphology of roots which are immediately shown during the radicle development. Integrated computer vision and computational intelligence were employed for phytomorphological signatures extraction of seedlings that were cultivated in a customized modulable spectrum experimental chamber (MSPEC). Root phenotype model was developed using graph-cut segmentation and region properties, and the ideal germination nutrient concentration was optimized using bioinspired models with firefly algorithm optimal result of 204.1 mg/L for nitrate, 238.15 mg/L for phosphate, and 158.08 mg/L for potassium. It was verified that lettuce seedlings can endure highly concentrated nutrients, however, it is more sensitive to phosphate as this macronutrient significantly promotes root growth with the increased whorl number on white light spectrum exposure with cold stratification.
基于种子分层、强化和光谱影响的芥蓝幼苗根系性状的萌发养分优化研究
生态生理刺激物直接影响根的形态,特别是在胚胎期。为了提高作物的发芽率,需要了解在非生物诱导剂作用下的根系性状。本研究以白、红、蓝光谱、冷分层、不同浓度生物活性物质(简单营养添加方案液、赤霉素酸、α-萘乙酸和盐酸硫胺素)对散叶莴苣幼苗根系构型的综合影响为研究对象,研究了不同浓度生物活性物质对散叶莴苣幼苗根系构型的影响。这些营养物质的促生长作用改变了根的生长速度和形态,这在根发育过程中立即表现出来。采用计算机视觉和计算智能相结合的方法,对在定制可调光谱实验室内培养的幼苗进行了植物形态特征提取。利用图切分割和区域特性建立根表型模型,并利用萤火虫算法对理想萌发养分浓度进行生物启发模型优化,最优结果为硝酸盐204.1 mg/L,磷酸盐238.15 mg/L,钾158.08 mg/L。经验证,莴苣幼苗能承受高浓度的养分,但对磷酸盐更为敏感,因为在冷分层白光光谱照射下,随着轮数的增加,磷酸盐能显著促进根系生长。
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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