Gene expression of antioxidant enzymes and coffee seed quality during pre-and post- physiological maturity.

Seeds collected at different maturation stages vary in physiological quality and patterns of protective antioxidant systems against deterioration. In this study we investigated the expression of genes that codify catalase (CAT), dismutase superoxide (SOD), and polyphenol oxidase (PPO) during the pre- and post-physiological maturation phases in whole seeds and in endosperms and embryos extracted from the seeds. Coffea arabica L. berries were collected at the green, yellowish-green, cherry, over-ripe, and dry stages, and the seeds were examined physiologically. The transcription levels of the genes were quantified by quantitative real-time polymerase chain reaction using coffee-specific primers. The highest level of SOD expression was observed in the endosperm at the cherry and over-ripe stages; in addition, these seeds presented the greatest physiological quality (assessed via germination test). The highest CAT3 transcript expression was observed at the green stage in whole seeds, and at the green and over-ripe stages in the embryos and endosperms High expression of the PPO transcript was observed at the green and yellowish-green stages in whole seeds. In embryos and endosperms, peak expression of the PPO transcript was observed at the green stage; subsequently, peaks at the cherry and over-ripe stages were observed. We concluded that the expression patterns of the SOD and CAT3 transcripts were similar at the more advanced maturation stages, which corresponded to enhanced physiological seed quality. High expression of the PPO transcript at the over-ripe stage, also observed in the embryos and endosperms at the cherry stage, coincided with the highest physiological seed quality.

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Main Authors: SANTOS, F. C., CAIXETA, F., CLEMENTE, A. C. S., PINHO, E. V., ROSA, S. D. V. F. da
Other Authors: UFLA; UFLA; UFLA; UFLA; STTELA DELLYZETE VEIGA F DA ROSA, SAPC.
Format: Artigo de periódico biblioteca
Language:English
eng
Published: 2016-03-04
Subjects:Catalace., Superoxide dismutase, Catechol oxidase.,
Online Access:http://www.alice.cnptia.embrapa.br/alice/handle/doc/1039772
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spelling dig-alice-doc-10397722017-08-16T02:26:06Z Gene expression of antioxidant enzymes and coffee seed quality during pre-and post- physiological maturity. SANTOS, F. C. CAIXETA, F. CLEMENTE, A. C. S. PINHO, E. V. ROSA, S. D. V. F. da UFLA; UFLA; UFLA; UFLA; STTELA DELLYZETE VEIGA F DA ROSA, SAPC. Catalace. Superoxide dismutase Catechol oxidase. Seeds collected at different maturation stages vary in physiological quality and patterns of protective antioxidant systems against deterioration. In this study we investigated the expression of genes that codify catalase (CAT), dismutase superoxide (SOD), and polyphenol oxidase (PPO) during the pre- and post-physiological maturation phases in whole seeds and in endosperms and embryos extracted from the seeds. Coffea arabica L. berries were collected at the green, yellowish-green, cherry, over-ripe, and dry stages, and the seeds were examined physiologically. The transcription levels of the genes were quantified by quantitative real-time polymerase chain reaction using coffee-specific primers. The highest level of SOD expression was observed in the endosperm at the cherry and over-ripe stages; in addition, these seeds presented the greatest physiological quality (assessed via germination test). The highest CAT3 transcript expression was observed at the green stage in whole seeds, and at the green and over-ripe stages in the embryos and endosperms High expression of the PPO transcript was observed at the green and yellowish-green stages in whole seeds. In embryos and endosperms, peak expression of the PPO transcript was observed at the green stage; subsequently, peaks at the cherry and over-ripe stages were observed. We concluded that the expression patterns of the SOD and CAT3 transcripts were similar at the more advanced maturation stages, which corresponded to enhanced physiological seed quality. High expression of the PPO transcript at the over-ripe stage, also observed in the embryos and endosperms at the cherry stage, coincided with the highest physiological seed quality. 2016-03-04T11:11:11Z 2016-03-04T11:11:11Z 2016-03-04 2014 2016-03-04T11:11:11Z Artigo de periódico Genetics and Molecular Research, v 13, n. 4, p. 10983-10993, 2014. http://www.alice.cnptia.embrapa.br/alice/handle/doc/1039772 en eng openAccess
institution EMBRAPA
collection DSpace
country Brasil
countrycode BR
component Bibliográfico
access En linea
databasecode dig-alice
tag biblioteca
region America del Sur
libraryname Sistema de bibliotecas de EMBRAPA
language English
eng
topic Catalace.
Superoxide dismutase
Catechol oxidase.
Catalace.
Superoxide dismutase
Catechol oxidase.
spellingShingle Catalace.
Superoxide dismutase
Catechol oxidase.
Catalace.
Superoxide dismutase
Catechol oxidase.
SANTOS, F. C.
CAIXETA, F.
CLEMENTE, A. C. S.
PINHO, E. V.
ROSA, S. D. V. F. da
Gene expression of antioxidant enzymes and coffee seed quality during pre-and post- physiological maturity.
description Seeds collected at different maturation stages vary in physiological quality and patterns of protective antioxidant systems against deterioration. In this study we investigated the expression of genes that codify catalase (CAT), dismutase superoxide (SOD), and polyphenol oxidase (PPO) during the pre- and post-physiological maturation phases in whole seeds and in endosperms and embryos extracted from the seeds. Coffea arabica L. berries were collected at the green, yellowish-green, cherry, over-ripe, and dry stages, and the seeds were examined physiologically. The transcription levels of the genes were quantified by quantitative real-time polymerase chain reaction using coffee-specific primers. The highest level of SOD expression was observed in the endosperm at the cherry and over-ripe stages; in addition, these seeds presented the greatest physiological quality (assessed via germination test). The highest CAT3 transcript expression was observed at the green stage in whole seeds, and at the green and over-ripe stages in the embryos and endosperms High expression of the PPO transcript was observed at the green and yellowish-green stages in whole seeds. In embryos and endosperms, peak expression of the PPO transcript was observed at the green stage; subsequently, peaks at the cherry and over-ripe stages were observed. We concluded that the expression patterns of the SOD and CAT3 transcripts were similar at the more advanced maturation stages, which corresponded to enhanced physiological seed quality. High expression of the PPO transcript at the over-ripe stage, also observed in the embryos and endosperms at the cherry stage, coincided with the highest physiological seed quality.
author2 UFLA; UFLA; UFLA; UFLA; STTELA DELLYZETE VEIGA F DA ROSA, SAPC.
author_facet UFLA; UFLA; UFLA; UFLA; STTELA DELLYZETE VEIGA F DA ROSA, SAPC.
SANTOS, F. C.
CAIXETA, F.
CLEMENTE, A. C. S.
PINHO, E. V.
ROSA, S. D. V. F. da
format Artigo de periódico
topic_facet Catalace.
Superoxide dismutase
Catechol oxidase.
author SANTOS, F. C.
CAIXETA, F.
CLEMENTE, A. C. S.
PINHO, E. V.
ROSA, S. D. V. F. da
author_sort SANTOS, F. C.
title Gene expression of antioxidant enzymes and coffee seed quality during pre-and post- physiological maturity.
title_short Gene expression of antioxidant enzymes and coffee seed quality during pre-and post- physiological maturity.
title_full Gene expression of antioxidant enzymes and coffee seed quality during pre-and post- physiological maturity.
title_fullStr Gene expression of antioxidant enzymes and coffee seed quality during pre-and post- physiological maturity.
title_full_unstemmed Gene expression of antioxidant enzymes and coffee seed quality during pre-and post- physiological maturity.
title_sort gene expression of antioxidant enzymes and coffee seed quality during pre-and post- physiological maturity.
publishDate 2016-03-04
url http://www.alice.cnptia.embrapa.br/alice/handle/doc/1039772
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