Overexpression of durum wheat NAC transcription factor TtNTL3A promotes early flowering and increases multiple stress tolerance in transgenic Arabidopsis

被引:6
|
作者
Saidi, Mohamed Najib [1 ]
Mergby, Dhawya [1 ]
Souibgui, Amel [1 ]
Yacoubi, Ines [1 ]
机构
[1] Ctr Biotechnol Sfax, Biotechnol & Plant Improvement Lab, POB 1177,Rd Sidi Mansour 6 Km, Sfax 3018, Tunisia
关键词
NAC transcription Factor; TtNTL3A; Wheat; Early flowering; Stress tolerance; EXPRESSION ANALYSIS; DROUGHT TOLERANCE; ABSCISIC-ACID; FACTOR FAMILY; GENE; RESISTANCE; RICE;
D O I
10.1016/j.plaphy.2022.09.027
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Plant-specific NAC transcription factors play important roles in plant development processes, hormone signaling and response to biotic and abiotic stresses. Here, a newly identified membrane-bound NAC gene, designated as TtNTL3A, was isolated from durum wheat. TtNTL3A was homologous to bread wheat TaNAC8 and rice OsNAC8. Moreover, yeast trans-activation assays revealed that TtNTL3A is a transcriptional activator. TtNTL3A was highly expressed in developing seeds and was induced by abiotic stresses, abscisic acid treatment and the infection with Fusarium graminearum. Besides, Transgenic Arabidopsis overexpressing TtNTL3A showed early flowering phenotype and higher tolerance to salt and drought stresses. RT-qPCR analysis revealed that drought and salt-responsive genes were highly expressed in transgenic lines compared to WT plants. Besides, these lines showed resistance to Fusarium graminearum, which was accompanied by a higher expression of pathogenesis-related genes (AtPR-1, Atpdf1.2, and AtNPR1) in TtNTL3A-OE lines. These findings suggest that TtNTL3A is an interesting target of genetic engineering to improve wheat tolerance to biotic and abiotic stresses.
引用
收藏
页码:1 / 9
页数:9
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