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Christian Paolo Balahadia
Christian Paolo Balahadia
Verified email at irri.org
Title
Cited by
Cited by
Year
CRISPR-Cas9 and CRISPR-Cpf1 mediated targeting of a stomatal developmental gene EPFL9 in rice
X Yin, AK Biswal, J Dionora, KM Perdigon, CP Balahadia, S Mazumdar, ...
Plant cell reports 36, 745-757, 2017
2112017
Re-creation of a key step in the evolutionary switch from C3 to C4 leaf anatomy
P Wang, R Khoshravesh, S Karki, R Tapia, CP Balahadia, ...
Current Biology 27 (21), 3278-3287. e6, 2017
1262017
Targeted Knockdown of GDCH in Rice Leads to a Photorespiratory-Deficient Phenotype Useful as a Building Block for C4 Rice
HC Lin, S Karki, RA Coe, S Bagha, R Khoshravesh, CP Balahadia, ...
Plant and Cell Physiology 57 (5), 919-932, 2016
492016
A low CO2-responsive mutant of Setaria viridis reveals that reduced carbonic anhydrase limits C4 photosynthesis
J Chatterjee, RA Coe, K Acebron, V Thakur, RM Yennamalli, F Danila, ...
Journal of experimental botany 72 (8), 3122-3136, 2021
16*2021
Single base editing using cytidine deaminase to change grain size and seed coat color in rice
MVT Tra, X Yin, I Bajal, CP Balahadia, WP Quick, A Bandyopadhyay
Rice Genome Engineering and Gene Editing: Methods and Protocols, 135-143, 2021
22021
A low CO₂-responsive mutant of Setaria viridis reveals that reduced carbonic anhydrase limits C₄ photosynthesis
J Chatterjee, RA Coe, K Acebron, V Thakur, RM Yennamalli, F Danila, ...
Oxford University Press, 2021
2021
Molecular characterization of transgenic rice (Oryza sativa L.) plants overexpressing mesophyll-specific carbonic anhydrase gene
MA Mercado, E Bagunu, JJ Anonuevo, F Montecillo, J Reyes, ...
Philippine Journal of Crop Science (Philippines) 43 (1), 2018
2018
CRISPR-Cas9 and CRISPR-Cpf1 mediated targeting of a stomatal developmental gene EPFL9 in rice.
YXJ Yin XiaoJia, AK Biswal, J Dionora, KM Perdigon, CP Balahadia, ...
2017
Re-creation of a key step in the evolutionary switch from C3 to C4 leaf anatomy.
WP Wang Peng, R Khoshravesh, S Karki, R Tapia, CP Balahadia, ...
2017
Targeted knockdown of GDCH in rice leads to a photorespiratory-deficient phenotype useful as a building block for C4 rice.
LHC Lin HsiangChun, SK Shanta Karki, RA Coe, SB Shaheen Bagha, ...
2016
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