Use of copper hydroxide in the cultivation of lisianthus seedlings (Eustoma grandiforum L.) under floating system

Previous experiences demonstrated the efficiency of the floating system for growing lisianthus (Eustoma grandiflorum L.) seedlings. Using this system, root growth usually expands through the plug cell drainage hole into the solution originating some difficulties at transplant. Pruning roots could f...

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Main Authors: Lorena Alejandra Barbaro, Mónica Alejandra Karlanián, Diego Alejandro Mata
Format: Article
Language:English
Published: Facultad de Ciencias Agrarias. Universidad Nacional de Cuyo 2017-07-01
Series:Revista de la Facultad de Ciencias Agrarias
Subjects:
Online Access:http://172.22.185.100/ojs3/index.php/RFCA/article/view/3103
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spelling doaj-ea93b379c96f471d878a77de9e0d7a792021-04-16T18:42:33ZengFacultad de Ciencias Agrarias. Universidad Nacional de CuyoRevista de la Facultad de Ciencias Agrarias0370-46611853-86652017-07-01491Use of copper hydroxide in the cultivation of lisianthus seedlings (Eustoma grandiforum L.) under floating systemLorena Alejandra Barbaro0Mónica Alejandra Karlanián1Diego Alejandro Mata2Instituto de Floricultura, CNIA-INTA - N. Repetto y Las Cabañas s/n, (1686) Hurlingham, Pcia. de Buenos Aires, ArgentinaInstituto de Floricultura, CNIA-INTA - N. Repetto y Las Cabañas s/n, (1686) Hurlingham, Pcia. de Buenos Aires, ArgentinaInstituto de Floricultura, CNIA-INTA - N. Repetto y Las Cabañas s/n, (1686) Hurlingham, Pcia. de Buenos Aires, Argentina Previous experiences demonstrated the efficiency of the floating system for growing lisianthus (Eustoma grandiflorum L.) seedlings. Using this system, root growth usually expands through the plug cell drainage hole into the solution originating some difficulties at transplant. Pruning roots could facilitate transplant as seedlings could be taken out of the tray more easily. However, root damages at the cutting point are a possible access for pathogens. The use of Cu(OH)2 in the nutrient solution as a chemical pruning method was evaluated. Lisianthus seeds were sown in floating trays and placed in nutrient solutions containing 0, 12, 23, 46, 92 and 138 g L-1 Cu(OH)2. After 30, 40, 47 and 54 days, fresh and dry weights of seedlings were recorded. When seedlings reached four expanded leaves they were transplanted to soil in a greenhouse. At flowering, shoots were harvested to evaluate flower stem quality. Total root and shoot fresh and dry weights were higher for seedlings cultivated with 0.023 or higher doses of Cu(OH)2. However, roots mass inside the tray cell were higher in all treatments compared to the control. The use of Cu(OH)2 during plug stage improved transplant size and no effect on further plant growth and development was observed. http://172.22.185.100/ojs3/index.php/RFCA/article/view/3103floating bedEustoma grandiflorum L.chemical pruningpropagation
collection DOAJ
language English
format Article
sources DOAJ
author Lorena Alejandra Barbaro
Mónica Alejandra Karlanián
Diego Alejandro Mata
spellingShingle Lorena Alejandra Barbaro
Mónica Alejandra Karlanián
Diego Alejandro Mata
Use of copper hydroxide in the cultivation of lisianthus seedlings (Eustoma grandiforum L.) under floating system
Revista de la Facultad de Ciencias Agrarias
floating bed
Eustoma grandiflorum L.
chemical pruning
propagation
author_facet Lorena Alejandra Barbaro
Mónica Alejandra Karlanián
Diego Alejandro Mata
author_sort Lorena Alejandra Barbaro
title Use of copper hydroxide in the cultivation of lisianthus seedlings (Eustoma grandiforum L.) under floating system
title_short Use of copper hydroxide in the cultivation of lisianthus seedlings (Eustoma grandiforum L.) under floating system
title_full Use of copper hydroxide in the cultivation of lisianthus seedlings (Eustoma grandiforum L.) under floating system
title_fullStr Use of copper hydroxide in the cultivation of lisianthus seedlings (Eustoma grandiforum L.) under floating system
title_full_unstemmed Use of copper hydroxide in the cultivation of lisianthus seedlings (Eustoma grandiforum L.) under floating system
title_sort use of copper hydroxide in the cultivation of lisianthus seedlings (eustoma grandiforum l.) under floating system
publisher Facultad de Ciencias Agrarias. Universidad Nacional de Cuyo
series Revista de la Facultad de Ciencias Agrarias
issn 0370-4661
1853-8665
publishDate 2017-07-01
description Previous experiences demonstrated the efficiency of the floating system for growing lisianthus (Eustoma grandiflorum L.) seedlings. Using this system, root growth usually expands through the plug cell drainage hole into the solution originating some difficulties at transplant. Pruning roots could facilitate transplant as seedlings could be taken out of the tray more easily. However, root damages at the cutting point are a possible access for pathogens. The use of Cu(OH)2 in the nutrient solution as a chemical pruning method was evaluated. Lisianthus seeds were sown in floating trays and placed in nutrient solutions containing 0, 12, 23, 46, 92 and 138 g L-1 Cu(OH)2. After 30, 40, 47 and 54 days, fresh and dry weights of seedlings were recorded. When seedlings reached four expanded leaves they were transplanted to soil in a greenhouse. At flowering, shoots were harvested to evaluate flower stem quality. Total root and shoot fresh and dry weights were higher for seedlings cultivated with 0.023 or higher doses of Cu(OH)2. However, roots mass inside the tray cell were higher in all treatments compared to the control. The use of Cu(OH)2 during plug stage improved transplant size and no effect on further plant growth and development was observed.
topic floating bed
Eustoma grandiflorum L.
chemical pruning
propagation
url http://172.22.185.100/ojs3/index.php/RFCA/article/view/3103
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