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Refinado por: Base de dados/Biblioteca: Oxford Journals - CRKN remover assunto: Plant Sciences remover
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1
Pseudo-response regulators, PRR9, PRR7 and PRR5, together play essential roles close to the circadian clock of Arabidopsis thaliana
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Pseudo-response regulators, PRR9, PRR7 and PRR5, together play essential roles close to the circadian clock of Arabidopsis thaliana

Nakamichi, N.(Nagoya Univ. (Japan)) ; Kita, M ; Ito, S ; Yamashino, T ; Mizuno, T

Plant and cell physiology, 2005-05, Vol.46 (5), p.686-698 [Periódico revisado por pares]

Japan: Oxford University Press

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2
Reconstitution of Arabidopsis thaliana SUMO pathways in E. coli: Functional evaluation of SUMO machinery proteins and mapping of SUMOylation sites by mass spectrometry
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Reconstitution of Arabidopsis thaliana SUMO pathways in E. coli: Functional evaluation of SUMO machinery proteins and mapping of SUMOylation sites by mass spectrometry

Okada, S.(Kwansei Gakuin Univ., Sanda, Hyogo (Japan). School of Science and Technology) ; Nagabuchi, M ; Takamura, Y ; Nakagawa, T ; Shinmyozu, K ; Nakayama, J ; Tanaka, K

Plant and cell physiology, 2009-06, Vol.50 (6), p.1049-1061 [Periódico revisado por pares]

Japan: Oxford University Press

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3
Gene expression and signal transduction in water-stress response
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Gene expression and signal transduction in water-stress response

Shinozaki, K ; Yamaguchi-Shinozaki, K

Plant physiology (Bethesda), 1997-10, Vol.115 (2), p.327-334 [Periódico revisado por pares]

Rockville, MD: American Society of Plant Physiologists

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4
Genetic evidence for the role of isopentenyl diphosphate isomerases in the mevalonate pathway and plant development in Arabidopsis
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Genetic evidence for the role of isopentenyl diphosphate isomerases in the mevalonate pathway and plant development in Arabidopsis

Okada, K.(Tokyo Univ. (Japan)) ; Kasahara, H ; Yamaguchi, S ; Kawaide, H ; Kamiya, Y ; Nojiri, H ; Yamane, H

Plant and cell physiology, 2008-04, Vol.49 (4), p.604-616 [Periódico revisado por pares]

Japan: Oxford University Press

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5
Gene transfer from organelles to the nucleus: how much, what happens, and why?
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Artigo
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Gene transfer from organelles to the nucleus: how much, what happens, and why?

Martin, W. (Technische Universitat Braunschweig, Braunschweig, Germany.) ; Herrmann, R.G

Plant physiology (Bethesda), 1998-09, Vol.118 (1), p.9-17 [Periódico revisado por pares]

Rockville, MD: American Society of Plant Physiologists

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6
Resistance gene-dependent plant defense responses
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Artigo
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Resistance gene-dependent plant defense responses

Hammond-Kosack, K.E. (John Innes Centre, Norwich, UK.) ; Jones, J.D.G

The Plant cell, 1996-10, Vol.8 (10), p.1773-1791 [Periódico revisado por pares]

United States: American Society of Plant Physiologists

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7
Abscisic acid is a key inducer of hydrogen peroxide production in leaves of maize [Zea mays] plants exposed to water stress
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Abscisic acid is a key inducer of hydrogen peroxide production in leaves of maize [Zea mays] plants exposed to water stress

Hu, X.(Nanjing Agricultural Univ. (China)) ; Zhang, A ; Zhang, J ; Jiang, M

Plant and cell physiology, 2006-11, Vol.47 (11), p.1484-1495 [Periódico revisado por pares]

Japan: Oxford Publishing Limited (England)

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8
Analysis of the expression of anthocyanin pathway genes in developing Vitis vinifera L. cv Shiraz grape berries and the implications for pathway regulation
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Analysis of the expression of anthocyanin pathway genes in developing Vitis vinifera L. cv Shiraz grape berries and the implications for pathway regulation

Boss, P.K. (Cooperative Research Center for Viticulture, Glen Osmond, Australia.) ; Davies, C ; Robinson, S.P

Plant physiology (Bethesda), 1996-08, Vol.111 (4), p.1059-1066 [Periódico revisado por pares]

Rockville, MD: American Society of Plant Physiologists

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9
Flavonoid-peroxidase reaction as a detoxification mechanism of plant cells against H2O2
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Flavonoid-peroxidase reaction as a detoxification mechanism of plant cells against H2O2

Yamasaki, H ; Sakihama, Y ; Ikehara, N

Plant physiology (Bethesda), 1997-12, Vol.115 (4), p.1405-1412 [Periódico revisado por pares]

Rockville, MD: American Society of Plant Physiologists

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10
Localization of hydrogen peroxide accumulation during the hypersensitive reaction of lettuce cells to Pseudomonas syringae pv phaseolicola
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Localization of hydrogen peroxide accumulation during the hypersensitive reaction of lettuce cells to Pseudomonas syringae pv phaseolicola

Bestwick, C.S. (Rowett Research Institute, Aberdeen, UK.) ; Brown, I.R ; Bennett, M.H.R ; Mansfield, J.W

The Plant cell, 1997-02, Vol.9 (2), p.209-221 [Periódico revisado por pares]

England: American Society of Plant Physiologists

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