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Overexpression of the CaHB12 transcription factor in cotton (Gossypium hirsutum) improves drought tolerance.

Authors :
Basso, Marcos Fernando
Costa, Julia Almeida
Ribeiro, Thuanne Pires
Arraes, Fabricio Barbosa Monteiro
Lourenço-Tessutti, Isabela Tristan
Macedo, Amanda Ferreira
Neves, Maysa Rosa das
Nardeli, Sarah Muniz
Arge, Luis Willian
Perez, Carlos Eduardo Aucique
Silva, Paolo Lucas Rodrigues
de Macedo, Leonardo Lima Pepino
Lisei-de-Sa, Maria Eugênia
Santos Amorim, Regina Maria
Pinto, Eduardo Romano de Campos
Silva, Maria Cristina Mattar
Morgante, Carolina Vianna
Floh, Eny Iochevet Segal
Alves-Ferreira, Marcio
Grossi-de-Sa, Maria Fatima
Source :
Plant Physiology & Biochemistry. Aug2021, Vol. 165, p80-93. 14p.
Publication Year :
2021

Abstract

The Coffea arabica HB12 gene (CaHB12), which encodes a transcription factor belonging to the HD-Zip I subfamily, is upregulated under drought, and its constitutive overexpression (35S:CaHB12 OX ) improves the Arabidopsis thaliana tolerance to drought and salinity stresses. Herein, we generated transgenic cotton events constitutively overexpressing the CaHB12 gene, characterized these events based on their increased tolerance to water deficit, and exploited the gene expression level from the CaHB12 network. The segregating events Ev8.29.1, Ev8.90.1, and Ev23.36.1 showed higher photosynthetic yield and higher water use efficiency under severe water deficit and permanent wilting point conditions compared to wild-type plants. Under well-irrigated conditions, these three promising transformed events showed an equivalent level of Abscisic acid (ABA) and decreased Indole-3-acetic acid (IAA) accumulation, and a higher putrescine/(spermidine + spermine) ratio in leaf tissues was found in the progenies of at least two transgenic cotton events compared to non-transgenic plants. In addition, genes that are considered as modulated in the A. thaliana 35S:CaHB12 OX line were also shown to be modulated in several transgenic cotton events maintained under field capacity conditions. The upregulation of GhPP2C and GhSnRK2 in transgenic cotton events maintained under permanent wilting point conditions suggested that CaHB12 might act enhancing the ABA-dependent pathway. All these data confirmed that CaHB12 overexpression improved the tolerance to water deficit, and the transcriptional modulation of genes related to the ABA signaling pathway or downstream genes might enhance the defense responses to drought. The observed decrease in IAA levels indicates that CaHB12 overexpression can prevent leaf abscission in plants under or after stress. Thus, our findings provide new insights on CaHB12 gene and identify several promising cotton events for conducting field trials on water deficit tolerance and agronomic performance. • CaHB12 gene overexpression does not affect ABA hormone accumulation. • CaHB12 gene overexpression reduces IAA hormone accumulation in leaves. • CaHB12 gene overexpression increase putrescine/(spermidine + spermine) ratio in leaf tissues. • CaHB12 ox transgenic events showed a decrease in the IAA levels indicates that CaHB12 gene overexpression can prevent leaf abscission in plants under water deficit stress. • CaHB12 ox transgenic events showed improved tolerance to water deficit. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
09819428
Volume :
165
Database :
Academic Search Index
Journal :
Plant Physiology & Biochemistry
Publication Type :
Academic Journal
Accession number :
150818264
Full Text :
https://doi.org/10.1016/j.plaphy.2021.05.009