Micropropagation of Spathiphyllum with Temporary Immersion Bioreactor System

Turkey has an advantageous position for the cultivation of ornamental plants for reasons such as favourable conditions, proximity to markets and cheap labour. In addition to classical production methods, biotechnological methods are used to meet the demand of Spathiphyllum, which is an indoor plant....

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Main Authors: Yıldız Aka Kaçar, Dicle Dönmez, Belgin Biçen, Mansur Hakan Erol, Özhan Şimsek, Yeşim Yalçın Mendi
Format: Article
Language:English
Published: Turkish Science and Technology Publishing (TURSTEP) 2020-06-01
Series:Turkish Journal of Agriculture: Food Science and Technology
Subjects:
Online Access:http://www.agrifoodscience.com/index.php/TURJAF/article/view/3364
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author Yıldız Aka Kaçar
Dicle Dönmez
Belgin Biçen
Mansur Hakan Erol
Özhan Şimsek
Yeşim Yalçın Mendi
author_facet Yıldız Aka Kaçar
Dicle Dönmez
Belgin Biçen
Mansur Hakan Erol
Özhan Şimsek
Yeşim Yalçın Mendi
author_sort Yıldız Aka Kaçar
collection DOAJ
description Turkey has an advantageous position for the cultivation of ornamental plants for reasons such as favourable conditions, proximity to markets and cheap labour. In addition to classical production methods, biotechnological methods are used to meet the demand of Spathiphyllum, which is an indoor plant. In recent years, it has been started to be used in micropropagation of plants called temporary immersion system as well as classical tissue culture systems. Within the scope of the present study, micropropagation and rooting studies were carried out using classical tissue culture system and Plantform, one of the temporary immersion bioreactor systems, in the commercially important Spathiphyllum ‘Chico’ genotype. MS medium containing 1 mg L-1 6-Benzylaminopurine (BAP) was used in micropropagation experiments established in both systems, and Murashige and Skoog (MS) medium containing 1 mg L-1 Indole-3-butyric acid (IBA) was used in rooting experiments. The results of micropropagation and rooting have been found to be successful in both systems. As a result of the screening with Sequence-Related Amplified Polymorphism (SRAP) markers, it was determined that there were no genetic differences in the plants that were reproduced and rooted.
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spelling doaj.art-6e27cae9f6e34c7e9aa873e00b7015cf2023-02-15T16:15:57ZengTurkish Science and Technology Publishing (TURSTEP)Turkish Journal of Agriculture: Food Science and Technology2148-127X2020-06-01851195120010.24925/turjaf.v8i5.1195-1200.33641647Micropropagation of Spathiphyllum with Temporary Immersion Bioreactor SystemYıldız Aka Kaçar0Dicle Dönmez1Belgin Biçen2Mansur Hakan Erol3Özhan Şimsek4Yeşim Yalçın Mendi5Department of Horticulture, Faculty of Agriculture, Çukurova University, 01330 AdanaBiotechnology Research and Application Center, Çukurova University, 01330 AdanaBiotechnology Research and Application Center, Çukurova University, 01330 AdanaBiotechnology Research and Application Center, Çukurova University, 01330 AdanaDepartment of Horticulture, Faculty of Agriculture, Erciyes University, 38280 KayseriDepartment of Horticulture, Faculty of Agriculture, Çukurova University, 01330 AdanaTurkey has an advantageous position for the cultivation of ornamental plants for reasons such as favourable conditions, proximity to markets and cheap labour. In addition to classical production methods, biotechnological methods are used to meet the demand of Spathiphyllum, which is an indoor plant. In recent years, it has been started to be used in micropropagation of plants called temporary immersion system as well as classical tissue culture systems. Within the scope of the present study, micropropagation and rooting studies were carried out using classical tissue culture system and Plantform, one of the temporary immersion bioreactor systems, in the commercially important Spathiphyllum ‘Chico’ genotype. MS medium containing 1 mg L-1 6-Benzylaminopurine (BAP) was used in micropropagation experiments established in both systems, and Murashige and Skoog (MS) medium containing 1 mg L-1 Indole-3-butyric acid (IBA) was used in rooting experiments. The results of micropropagation and rooting have been found to be successful in both systems. As a result of the screening with Sequence-Related Amplified Polymorphism (SRAP) markers, it was determined that there were no genetic differences in the plants that were reproduced and rooted.http://www.agrifoodscience.com/index.php/TURJAF/article/view/3364plantformdaldırma biyoreaktör sistemiyetiştirmemikroçoğaltımbiyoreaktör
spellingShingle Yıldız Aka Kaçar
Dicle Dönmez
Belgin Biçen
Mansur Hakan Erol
Özhan Şimsek
Yeşim Yalçın Mendi
Micropropagation of Spathiphyllum with Temporary Immersion Bioreactor System
Turkish Journal of Agriculture: Food Science and Technology
plantform
daldırma biyoreaktör sistemi
yetiştirme
mikroçoğaltım
biyoreaktör
title Micropropagation of Spathiphyllum with Temporary Immersion Bioreactor System
title_full Micropropagation of Spathiphyllum with Temporary Immersion Bioreactor System
title_fullStr Micropropagation of Spathiphyllum with Temporary Immersion Bioreactor System
title_full_unstemmed Micropropagation of Spathiphyllum with Temporary Immersion Bioreactor System
title_short Micropropagation of Spathiphyllum with Temporary Immersion Bioreactor System
title_sort micropropagation of spathiphyllum with temporary immersion bioreactor system
topic plantform
daldırma biyoreaktör sistemi
yetiştirme
mikroçoğaltım
biyoreaktör
url http://www.agrifoodscience.com/index.php/TURJAF/article/view/3364
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AT ozhansimsek micropropagationofspathiphyllumwithtemporaryimmersionbioreactorsystem
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