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Combining DOE With Neurofuzzy Logic for Healthy Mineral Nutrition of Pistachio Rootstocks in vitro Culture

机译:DOE与神经模糊逻辑相结合的开心果砧木健康矿物质营养

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摘要

The aim of this study was to determine the effects of Murashige and Skoog (MS) salts on optimal growth of two pistachio rootstocks, P. vera cv. “Ghazvini” and “UCB1” using design of experiments (DOE) and artificial intelligence (AI) tools. MS medium with 14 macro—and micro-elements was used as base point and its concentration varied from 0 to 5 × MS concentrations. Design of experiments (DOE) software was used to generate a five-dimensional design space by categorizing MS salts into five independent factors (NH4NO3, KNO3, mesos, micros and iron), reducing the experimental design space from 3,125 to just 29 treatments. Typical plant growth parameters such as shoot quality (SQ), proliferation rate (PR), shoot length (SL), and some physiological disorders including shoot-tip necrosis (STN) and callus formation at the base of explants (BC) were evaluated for each treatment. The results were successfully modeled using neurofuzzy logic software. The model delivered new insights, by different sets of “IF–THEN” rules, pinpointing the key role of some ion interactions (SO42- × Cl, K+ × SO42- × EDTA, and Fe2+ × Cu2+ × NO3-) for SQ, PR, and SL, whilst physiological disorders (STN and BC) were governed mainly by independent ions as Fe2+ and EDTA, respectively. In our opinion, the methodology and results obtained in this study is extremely useful to understand the effect of mineral nutrients on pistachio in vitro culture, through discovering new complex interactions among macro—and micro-elements which can be implemented to design new media of plant tissue culture and improve healthy plant micropropagation for any plant species.
机译:这项研究的目的是确定Murashige和Skoog(MS)盐对两种开心果砧木P. vera cv最佳生长的影响。使用实验设计(DOE)和人工智能(AI)工具的“ Ghazvini”和“ UCB1”。以14个宏观元素和微量元素的MS培养基为基点,其浓度在0到5×MS浓度之间变化。实验设计(DOE)软件用于通过将MS盐分类为五个独立的因素(NH4NO3,KNO3,介孔,微米和铁)生成一个五维设计空间,从而将实验设计空间从3125个减少到仅29种处理。评估了典型的植物生长参数,例如枝条质量(SQ),增殖率(PR),枝条长度(SL)以及一些生理疾病,包括枝梢坏死(STN)和外植体基部的愈伤组织形成(BC)。每次治疗。使用神经模糊逻辑软件成功模拟了结果。该模型通过不同的“ IF–THEN”规则集提供了新的见解,指出了某些离子相互作用的关键作用( SO 4 2 - ×Cl -,K + ×<数学xmlns:mml =“ http://www.w3.org/1998/Math/MathML” id =“ M2”溢出=“ scroll”> SO 4 2 - ×EDTA -< / sup>和Fe 2 + ×Cu 2 + ×<数学xmlns:mml =“ http://www.w3.org/1998/Math/MathML” id =“ M3” overflow =“ scroll”> 3 - )用于SQ,PR和SL,而生理疾病(STN和BC)主要由独立离子(如Fe 2 + 和EDTA -。我们认为,本研究获得的方法和结果对于了解矿物质养分对开心果体外培养的影响非常有用,通过发现宏观和微观元素之间新的复杂相互作用,可以实现植物新媒介的设计。组织培养,并改善任何植物种类的健康植物微繁殖。

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