Artificial Neural Network Genetic Algorithm As Powerful Tool to Predict and Optimize In vitro Proliferation Mineral Medium for G × N15 Rootstock

MM Arab, A Yadollahi, A Shojaeiyan… - Frontiers in plant …, 2016 - frontiersin.org
One of the major obstacles to the micropropagation of Prunus rootstocks has, up until now,
been the lack of a suitable tissue culture medium. Therefore, reformulation of culture media …

[HTML][HTML] Modeling and optimizing a new culture medium for in vitro rooting of G× N15 Prunus rootstock using artificial neural network-genetic algorithm

MM Arab, A Yadollahi, M Eftekhari, H Ahmadi… - Scientific reports, 2018 - nature.com
The main aim of the present investigation is modeling and optimization of a new culture
medium for in vitro rooting of G× N15 rootstock using an artificial neural network-genetic …

Design of tissue culture media for efficient Prunus rootstock micropropagation using artificial intelligence models

EN Alanagh, G Garoosi, R Haddad, S Maleki… - Plant Cell, Tissue and …, 2014 - Springer
Establishing optimized protocols for micropropagation of some economical plants, such as
Prunus sp., is still one of the most important challenges for in vitro plant culture researchers …

Mathematical Modeling and Optimizing of in Vitro Hormonal Combination for G × N15 Vegetative Rootstock Proliferation Using Artificial Neural Network-Genetic …

MM Arab, A Yadollahi, H Ahmadi, M Eftekhari… - Frontiers in Plant …, 2017 - frontiersin.org
The efficiency of a hybrid systems method which combined artificial neural networks (ANNs)
as a modeling tool and genetic algorithms (GAs) as an optimizing method for input variables …

[HTML][HTML] Effects of nutrient media, different cytokinin types and their concentrations on in vitro multiplication of G× N15 (hybrid of almond× peach) vegetative rootstock

MM Arab, A Yadollahi, A Shojaeiyan, S Shokri… - Journal of genetic …, 2014 - Elsevier
The objective of this research was to assess the effects of different media ie Murashige and
Skoog (MS) and Quoirin and Lepoivre (QL), cytokinin type ie 6-Benzyladenin (BA) and 6 …

Combining gene expression programming and genetic algorithm as a powerful hybrid modeling approach for pear rootstocks tissue culture media formulation

S Jamshidi, A Yadollahi, MM Arab, M Soltani… - Plant Methods, 2019 - Springer
Background Predicting impact of plant tissue culture media components on explant
proliferation is important especially in commercial scale for optimizing efficient culture …

[HTML][HTML] Optimizing culture media for in vitro proliferation and rooting of Tetra (Prunus empyrean 3) rootstock

F Sadeghi, A Yadollahi, MJ Kermani… - Journal of Genetic …, 2015 - Elsevier
The enormous demand for new rootstock genotypes in Prunus spp. makes us to use
micropropagation as an unavoidable propagation method. Therefore, the study on …

[HTML][HTML] Effect of different media and growth regulators on micropropagation of GF677

M Gerdakaneh, H Badakhshan… - Plant …, 2020 - plantproduction.scu.ac.ir
Background and Objectives GF677 is a widely used rootstock for peach, nectarine and
almond. It is vigourous and adapts well to limestone soils and drought. Due to low efficiency …

[PDF][PDF] The use of the Driver-Kuniyuki nutrient medium for micropropagation of rootstocks of LC-52 (Cerasus vulgaris× Cerasus fruticose) and Gizela 6 (Peisica vulgaris …

SM Khamurzaev, IM Bamatov, EM Butsaeva… - 2018 - researchgate.net
The article presents an overview of the use of different nutrient media during in vitro
micropropagation of plants. Further, article also provides information regarding the effect of …

Micropropagation Protocols of New Prunus Hybrids with Significant Rootstock Potential in Fruit Breeding and Cultivation

E Bulunuz Palaz, R Ugur, M Yaman - Erwerbs-Obstbau, 2023 - Springer
In vitro micropropagation is the most valid production method used for disease-free, clonal,
and mass production of plants developed using unique breeding methods. This study was …