Rosicler Colet
University of Rhode Island
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Publication
Featured researches published by Rosicler Colet.
Cyta-journal of Food | 2011
Jamile Zeni; Rosicler Colet; Karine Cence; Lídia Tiggemann; Geciane Toniazzo; Rogério Luis Cansian; M. Di Luccio; D. Oliveira; Eunice Valduga
This work aimed at screening microorganisms capable of producing carotenoids. Microorganisms were isolated from soil, leaves, fruits, flowers, agro-industrial wastes, and processed product in decomposition and then grown in an orbital shaker, using 10% (w/v) of inoculum (25 °C, 180 rpm for 48 h) and incubated for 120 h in a dark room. A total of 116 microorganisms were isolated and screened: 16 yeasts, 65 bacteria, and 35 fungi. Three yeasts demonstrated great potential to produce red carotenoids, with a total carotenoid content of 707–818 μg L−1 (99–263 μg g−1). One filamentous fungus and two bacteria produced mostly yellow pigments in a final concentration ranging from 1063 to 2563 μg L−1 (239–2310 μg g−1). From 116 isolated microorganisms, several of them showed potential for production of carotenoid-synthesizing activity. RAPD analysis was used to check the genetic differences between the screened strains, showing that all microorganisms were from different species. El objetivo de este trabajo fue examinar los microorganismos capaces de producir carotenoides. Microorganismos de tierra, hojas, frutos, flores, residuos agro-industriales y producto procesado en descomposición se aislaron y se cultivaron en un agitador orbital, usando 10% (w/v) de inóculo (25 °C, 180 rpm durante 48 horas) e incubados durante 120 h en una habitación oscura. Se aislaron y examinaron un total de 116 microorganismos, 16 levaduras, 65 bacterias y 35 hongos. Tres levaduras demostraron un gran potencial para producir carotenoides rojos, con un contenido total de carotenoides de entre 707 a 818 μg L−1 (de 99 a 263 μg g−1). Un hongo filamentoso y dos bacterias produjeron en su mayoría pigmentos amarillos en una concentración final de entre 1063 a 2563 μg L−1 (239 a 2310 μg g−1). De 116 microorganismos aislados, varios de ellos mostraron potencial para la producción de actividad sintetizadora de carotenoides. Se usó el análisis RAPD para revisar las diferencias genéticas entre las cepas examinadas, mostrando que todos los microorganismos eran de diferentes especies.
Applied Biochemistry and Biotechnology | 2011
Jamile Zeni; Karine Cence; Camila Elis Grando; Lídia Tiggermann; Rosicler Colet; Lindomar Lerin; Rogério Luis Cansian; Geciane Toniazzo; Débora de Oliveira; Eunice Valduga
Biocatalysis and agricultural biotechnology | 2014
Eunice Valduga; Arthur Henrique Rausch Ribeiro; Karine Cence; Rosicler Colet; Lídia Tiggemann; Jamile Zeni; Geciane Toniazzo
Food and Bioprocess Technology | 2011
Rogernei de Paula; Rosicler Colet; Débora de Oliveira; Eunice Valduga; Helen Treichel
International Journal of Food Science and Technology | 2009
Eunice Valduga; Pihetra Oliveira Tatsch; Lídia Tiggemann; Jamile Zeni; Rosicler Colet; João Marcos Cansian; Helen Treichel; Marco Di Luccio
Alimentos e Nutrição | 2009
Giovana Cristina Ceni; Rosicler Colet; Marcieli Peruzzolo; Fabiele Witschinski; Letícia Tomicki; Almir Luis Barriquello; Eunice Valduga
European Food Research and Technology | 2015
Rosicler Colet; Marco Di Luccio; Eunice Valduga
Biocatalysis and agricultural biotechnology | 2017
Rosicler Colet; Letícia Urnau; Jaine Bampi; Jamile Zeni; Bruna Bernar Dias; Eliseu Rodrigues; Rosângela Assis Jacques; Marco Di Luccio; Eunice Valduga
Ciencia Rural | 2018
Sidiane Iltchenco; Daiane Preci; Carla Bonifacino; Eugenia Franco Fraguas; Clarice Steffens; Luis Alberto Panizzolo; Rosicler Colet; Ilizandra Aparecida Fernandes; Cecilia Abirached; Eunice Valduga; Juliana Steffens
Canadian Journal of Chemical Engineering | 2018
Letícia Urnau; Rosicler Colet; Viviane Faria Soares; Elton Franceschi; Eunice Valduga; Clarice Steffens