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Refinado por: autor: David-Schwartz, Rakefet remover
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1
CaJOINTLESS is a MADS-box gene involved in suppression of vegetative growth in all shoot meristems in pepper
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Artigo
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CaJOINTLESS is a MADS-box gene involved in suppression of vegetative growth in all shoot meristems in pepper

Cohen, Oded ; Borovsky, Yelena ; David-Schwartz, Rakefet ; Paran, Ilan

Journal of experimental botany, 2012-08, Vol.63 (13), p.4947-4957 [Periódico revisado por pares]

Oxford: Oxford University Press [etc.]

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2
CaHAM is autoregulated and regulates CaSTM expression and is required for shoot apical meristem organization in pepper
Material Type:
Artigo
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CaHAM is autoregulated and regulates CaSTM expression and is required for shoot apical meristem organization in pepper

David-Schwartz, Rakefet ; Borovsky, Yelena ; Zemach, Hanita ; Paran, Ilan

Plant science (Limerick), 2013-04, Vol.203, p.8-16 [Periódico revisado por pares]

Ireland: Elsevier Ireland Ltd

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3
CaJOINTLESSis a MADS-box gene involved in suppression of vegetative growth in all shoot meristems in pepper
Material Type:
Artigo
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CaJOINTLESSis a MADS-box gene involved in suppression of vegetative growth in all shoot meristems in pepper

Cohen, Oded ; Borovsky, Yelena ; David-Schwartz, Rakefet ; Paran, Ilan

Journal of experimental botany, 2012-01, Vol.63 (13), p.4947-4957 [Periódico revisado por pares]

OXFORD UNIVERSITY PRESS

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4
CaBLIND regulates axillary meristem initiation and transition to flowering in pepper
Material Type:
Artigo
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CaBLIND regulates axillary meristem initiation and transition to flowering in pepper

Jeifetz, Dar ; David-Schwartz, Rakefet ; Borovsky, Yelena ; Paran, Ilan

Planta, 2011-12, Vol.234 (6), p.1227-1236 [Periódico revisado por pares]

Berlin/Heidelberg: Springer

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5
Capsicum annuum S (CaS) promotes reproductive transition and is required for flower formation in pepper (Capsicum annuum)
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Artigo
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Capsicum annuum S (CaS) promotes reproductive transition and is required for flower formation in pepper (Capsicum annuum)

Cohen, Oded ; Borovsky, Yelena ; David‐Schwartz, Rakefet ; Paran, Ilan

The New phytologist, 2014-05, Vol.202 (3), p.1014-1023 [Periódico revisado por pares]

England: William Wesley and Son

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6
Grapevine petioles are more sensitive to drought induced embolism than stems: evidence from in vivo MRI and microcomputed tomography observations of hydraulic vulnerability segmentation
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Artigo
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Grapevine petioles are more sensitive to drought induced embolism than stems: evidence from in vivo MRI and microcomputed tomography observations of hydraulic vulnerability segmentation

Hochberg, Uri ; Albuquerque, Caetano ; Rachmilevitch, Shimon ; Cochard, Herve ; David‐Schwartz, Rakefet ; Brodersen, Craig R. ; McElrone, Andrew ; Windt, Carel W.

Plant, cell and environment, 2016-09, Vol.39 (9), p.1886-1894 [Periódico revisado por pares]

United States: Wiley Subscription Services, Inc

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7
Guard cell activity of PIF4 and HY5 control transpiration
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Artigo
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Guard cell activity of PIF4 and HY5 control transpiration

Kelly, Gilor ; Yaaran, Adi ; Gal, Atara ; Egbaria, Aiman ; Brandsma, Danja ; Belausov, Eduard ; Wolf, Dalia ; David-Schwartz, Rakefet ; Granot, David ; Eyal, Yoram ; Carmi, Nir ; Sade, Nir

Plant science (Limerick), 2023-03, Vol.328, p.111583-111583, Article 111583 [Periódico revisado por pares]

Ireland: Elsevier B.V

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