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Biblioteca(s):  Embrapa Semiárido.
Data corrente:  21/06/2017
Data da última atualização:  03/10/2018
Tipo da produção científica:  Artigo em Periódico Indexado
Autoria:  FREITAS, S. T. de; MARTINELLI, F.; FENG, B.; REITZ, N. F.; MITCHAM, E. J.
Afiliação:  SERGIO TONETTO DE FREITAS, CPATSA; FEDERICO MARTINELLI, Department of Agricultural and Forest Sciences, University of Palermo, Palermo, Italy; BIHONG FENG, College of Agriculture, Guangxi University, Guangxi, China; NICHOLAS F. REITZ, Department of Plant Sciences, University of California, Davis, CA, USA; ELIZABETH J. MITCHAM, Department of Plant Sciences, University of California, Davis, CA, USA.
Título:  Transcriptome approach to understand the potential mechanisms inhibiting or triggering blossom-end rot development in tomato fruit in response to plant growth regulators.
Ano de publicação:  2017
Fonte/Imprenta:  Journal of Plant Growth Regulation, v. 37, p. 183-198, 2017.
ISSN:  1435-8107
DOI:  10.1007/s00344-017-9718-2
Idioma:  Inglês
Conteúdo:  The objectives of this study were to analyze changes in gene expression and identify candidate genes and gene networks potentially inhibiting or triggering blossom-end rot (BER) in tomatoes treated with plant growth regulators. ?Ace 55 (Vf)? tomato plants were grown in a greenhouse and sprayed with Apogee (300 mg L?1), abscisic acid (ABA) (500 mg L?1), water (control), or gibberellins 4?+?7 (GA4?+?7) (300 mg L?1) weekly after pollination. The BER incidence rate was zero in Apogee- and ABA-, medium in water-, and high in GA4?+?7-treated plants from 26 to 40 days after pollination (DAP). At 26 DAP, healthy blossom-end fruit tissue still not showing visible BER symptoms was used for transcriptome analysis. Candidate genes potentially inhibiting or triggering BER were identified through a correlation analysis between gene expression levels at 26 DAP and BER incidence rate from 26 to 40 DAP. Genes inhibiting BER should be up-regulated in Apogee- and/or ABA-treated fruit and down-regulated in GA4?+?7-treated fruit. Genes triggering BER should be down-regulated in Apogee- and/or ABA-treated fruit and up-regulated in GA4?+?7-treated fruit. Most of the candidate genes inhibiting BER have functions leading to higher resistance to oxidative stress and toxic compounds, whereas most of the candidate genes triggering BER have functions leading to higher levels of oxidative stress and cell death. The results suggest that Apogee and ABA inhibited BER possibly by increasing fruit tissue resi... Mostrar Tudo
Palavras-Chave:  BER; Disorder; Gibberellin; Giberelina; Plant growth regulators.
Thesagro:  Ácido giberélico; Estimulante de Crescimento Vegetal; Gene; Hormônio Vegetal; Regulador de crescimento; Tomate.
Thesaurus Nal:  Abscisic acid; Prohexadione calcium.
Categoria do assunto:  A Sistemas de Cultivo
URL:  https://ainfo.cnptia.embrapa.br/digital/bitstream/item/183805/1/Freitas2018-Article-TranscriptomeApproachToUnderst.pdf
Marc:  Mostrar Marc Completo
Registro original:  Embrapa Semiárido (CPATSA)
Biblioteca ID Origem Tipo/Formato Classificação Cutter Registro Volume Status URL
CPATSA56634 - 1UPCAP - DD
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1.Imagem marcado/desmarcadoFREITAS, S. T. de; MARTINELLI, F.; FENG, B.; REITZ, N. F.; MITCHAM, E. J. Transcriptome approach to understand the potential mechanisms inhibiting or triggering blossom-end rot development in tomato fruit in response to plant growth regulators. Journal of Plant Growth Regulation, v. 37, p. 183-198, 2017.
Tipo: Artigo em Periódico IndexadoCirculação/Nível: A - 2
Biblioteca(s): Embrapa Semiárido.
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