TY - JOUR
T1 - Physiological and phenotypical effects of the overexpression of the OVP1 gene in Japonica rice
AU - Rocha, Dhiovanna Correia
AU - da Cruz, Thais Ignez
AU - de Oliveira, Joao Augusto Vieira
AU - de Souza, Isabela Pavanelli
AU - Dedicova, Beata
AU - Coelho, Alexandre Siqueira Guedes
AU - Vianello, Rosana Pereira
AU - Brondani, Claudio
PY - 2023
Y1 - 2023
N2 - - The objective of this work was to evaluate the physiological, phenotypic, and gene expression parameters in genetically modified (GM) rice plants that overexpress the Oryza sativa Vacuolar H+-Pyrophosphatase 1 (OVP1) gene, compared with non-genetically modified (NGM) rice. GM and NGM plants of the BRSMG Curinga cultivar were evaluated in two experiments, in a laboratory and greenhouse, in a randomized complete block design, with four replicates. Agronomic traits of interest were estimated, and transcriptome analysis and gene expression quantification were carried out. GM plants showed a 31 and 21% higher number of spikelets per panicle and total number of grains per panicle, respectively, in comparison with NGM plants. Physiological changes occurred during the grain-filling stage, in which GM plants presented a photosynthetic rate and carboxylation efficiency 61 and 89% higher than those of NGM plants, respectively. The overexpression of the OVP1 gene favors the upregulation of some photosynthesis genes and the increase in the number of spikelets and in the photosynthetic rate, but does not favor the increase in grain yield.
AB - - The objective of this work was to evaluate the physiological, phenotypic, and gene expression parameters in genetically modified (GM) rice plants that overexpress the Oryza sativa Vacuolar H+-Pyrophosphatase 1 (OVP1) gene, compared with non-genetically modified (NGM) rice. GM and NGM plants of the BRSMG Curinga cultivar were evaluated in two experiments, in a laboratory and greenhouse, in a randomized complete block design, with four replicates. Agronomic traits of interest were estimated, and transcriptome analysis and gene expression quantification were carried out. GM plants showed a 31 and 21% higher number of spikelets per panicle and total number of grains per panicle, respectively, in comparison with NGM plants. Physiological changes occurred during the grain-filling stage, in which GM plants presented a photosynthetic rate and carboxylation efficiency 61 and 89% higher than those of NGM plants, respectively. The overexpression of the OVP1 gene favors the upregulation of some photosynthesis genes and the increase in the number of spikelets and in the photosynthetic rate, but does not favor the increase in grain yield.
KW - Index terms
KW - Oryza sativa
KW - genetic engineering
KW - grain yield components
KW - RNAseq
KW - Index terms
KW - Oryza sativa
KW - genetic engineering
KW - grain yield components
KW - RNAseq
UR - https://res.slu.se/id/publ/126907
U2 - 10.1590/S1678-3921.pab2023.v58.03167
DO - 10.1590/S1678-3921.pab2023.v58.03167
M3 - Journal article
SN - 0100-204X
VL - 58
JO - Pesquisa Agropecuaria Brasileira
JF - Pesquisa Agropecuaria Brasileira
M1 - e03167
ER -