TY - JOUR
T1 - Drought tolerance induced by the overexpression of the nuclear rbcL gene in rice
AU - de Oliveira, João Augusto Vieira
AU - Vianello, Rosana Pereira
AU - Lanna, Anna Cristina
AU - Dedicova, Beata
AU - Rocha, Dhiovanna Correia
AU - Brondani, Claudio
PY - 2023
Y1 - 2023
N2 - - The objective of this work was to determine whether the overexpression of the nuclear Rubisco large subunit (rbcL) improves the drought tolerance of the genetically modified (GM) BRSMG Curinga upland rice (Oryza sativa) cultivar. GM and non-genetically modified (NGM) plants of the same cultivar were compared under the two following water treatments: well watered (WW) and water deficit (WD). The performance of the agronomic traits of GM plants, including grain yield, was superior to that of NGM plants in both treatments. By quantitative polymerase chain reaction, GM plants show a significantly higher expression of the rbcL gene in both WW and WD, as well as a larger amount of abscisic acid. With the RNAseq analysis, almost three times more upregulated genes are identified in GM plants in stage 2 after water restriction, indicating a greater protection against water deficit. The higher expression of genes related to the protection of the cellular metabolism and a series of physiological alterations may be involved in the increase in the drought tolerance of GM rice plants overexpressing the rbcL gene.
AB - - The objective of this work was to determine whether the overexpression of the nuclear Rubisco large subunit (rbcL) improves the drought tolerance of the genetically modified (GM) BRSMG Curinga upland rice (Oryza sativa) cultivar. GM and non-genetically modified (NGM) plants of the same cultivar were compared under the two following water treatments: well watered (WW) and water deficit (WD). The performance of the agronomic traits of GM plants, including grain yield, was superior to that of NGM plants in both treatments. By quantitative polymerase chain reaction, GM plants show a significantly higher expression of the rbcL gene in both WW and WD, as well as a larger amount of abscisic acid. With the RNAseq analysis, almost three times more upregulated genes are identified in GM plants in stage 2 after water restriction, indicating a greater protection against water deficit. The higher expression of genes related to the protection of the cellular metabolism and a series of physiological alterations may be involved in the increase in the drought tolerance of GM rice plants overexpressing the rbcL gene.
KW - Oryza sativa
KW - abscisic acid
KW - genetic engineering
KW - quantitative PCR
KW - Rubisco
KW - Oryza sativa
KW - abscisic acid
KW - genetic engineering
KW - quantitative PCR
KW - Rubisco
UR - https://res.slu.se/id/publ/126342
U2 - 10.1590/S1678-3921.pab2023.v58.03181
DO - 10.1590/S1678-3921.pab2023.v58.03181
M3 - Journal article
SN - 0100-204X
VL - 58
JO - Pesquisa Agropecuaria Brasileira
JF - Pesquisa Agropecuaria Brasileira
M1 - e03181
ER -