Use of Tomato (Lycopersicon-Esculentum) Seedlings to Detect Bensulfuron and Quinclorac Residues in Water

During 1990, injury to tomatoes grown on the narrow land between the Albufera Lake (Spain) and the Mediterranean Sea was attributed to use of irrigation water coming from adjacent rice fields containing bensulfuron and quinclorac. A tomato root bioassay was developed to detect the herbicides in 10 m...

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Autores principales: Gómez-De-Barreda, Diego, Lorenzo Rueda, Elena, Carbonell, Emilio A., Cases, B., Munoz, Niceto
Formato: article
Lenguaje:Inglés
Publicado: 2017
Acceso en línea:http://hdl.handle.net/20.500.11939/5104
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author Gómez-De-Barreda, Diego
Lorenzo Rueda, Elena
Carbonell, Emilio A.
Cases, B.
Munoz, Niceto
author_browse Carbonell, Emilio A.
Cases, B.
Gómez-De-Barreda, Diego
Lorenzo Rueda, Elena
Munoz, Niceto
author_facet Gómez-De-Barreda, Diego
Lorenzo Rueda, Elena
Carbonell, Emilio A.
Cases, B.
Munoz, Niceto
author_sort Gómez-De-Barreda, Diego
collection ReDivia
description During 1990, injury to tomatoes grown on the narrow land between the Albufera Lake (Spain) and the Mediterranean Sea was attributed to use of irrigation water coming from adjacent rice fields containing bensulfuron and quinclorac. A tomato root bioassay was developed to detect the herbicides in 10 ml of water. The assay was more sensitive to bensulfuron (0.5 ng ml-1) than quinclorac (100 ng ml-1). Only 30 ml of the affected water are necessary to conduct the test. Albufera water, sampled at three sites during 1991 and one during 1992 in the irrigation network canals caused different tomato main root length responses.
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spelling ReDivia51042025-04-25T14:45:23Z Use of Tomato (Lycopersicon-Esculentum) Seedlings to Detect Bensulfuron and Quinclorac Residues in Water Gómez-De-Barreda, Diego Lorenzo Rueda, Elena Carbonell, Emilio A. Cases, B. Munoz, Niceto During 1990, injury to tomatoes grown on the narrow land between the Albufera Lake (Spain) and the Mediterranean Sea was attributed to use of irrigation water coming from adjacent rice fields containing bensulfuron and quinclorac. A tomato root bioassay was developed to detect the herbicides in 10 ml of water. The assay was more sensitive to bensulfuron (0.5 ng ml-1) than quinclorac (100 ng ml-1). Only 30 ml of the affected water are necessary to conduct the test. Albufera water, sampled at three sites during 1991 and one during 1992 in the irrigation network canals caused different tomato main root length responses. 2017-06-01T10:11:43Z 2017-06-01T10:11:43Z 1993 APR-JUN 1993 article Debarreda, D. G., Lorenzo, E., Carbonell, E.A., Cases, B., Munoz, N. (1993). Use of Tomato (Lycopersicon-Esculentum), Seedlings to Detect Bensulfuron and Quinclorac Residues in Water. Weed Technology, 7(2), 376-381. 0890-037X http://hdl.handle.net/20.500.11939/5104 10.1017/S0890037X00027767 en openAccess Impreso
spellingShingle Gómez-De-Barreda, Diego
Lorenzo Rueda, Elena
Carbonell, Emilio A.
Cases, B.
Munoz, Niceto
Use of Tomato (Lycopersicon-Esculentum) Seedlings to Detect Bensulfuron and Quinclorac Residues in Water
title Use of Tomato (Lycopersicon-Esculentum) Seedlings to Detect Bensulfuron and Quinclorac Residues in Water
title_full Use of Tomato (Lycopersicon-Esculentum) Seedlings to Detect Bensulfuron and Quinclorac Residues in Water
title_fullStr Use of Tomato (Lycopersicon-Esculentum) Seedlings to Detect Bensulfuron and Quinclorac Residues in Water
title_full_unstemmed Use of Tomato (Lycopersicon-Esculentum) Seedlings to Detect Bensulfuron and Quinclorac Residues in Water
title_short Use of Tomato (Lycopersicon-Esculentum) Seedlings to Detect Bensulfuron and Quinclorac Residues in Water
title_sort use of tomato lycopersicon esculentum seedlings to detect bensulfuron and quinclorac residues in water
url http://hdl.handle.net/20.500.11939/5104
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