共 42 条
Abscisic Acid, Stress, and Ripening (TtASR1) Gene as a Functional Marker for Salt Tolerance in Durum Wheat
被引:17
作者:

Hamdi, Karama
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Univ Sfax, CBS, Biotechnol & Plant Improvement Lab, BP 1177 3018, Sfax, Tunisia Univ Sfax, CBS, Biotechnol & Plant Improvement Lab, BP 1177 3018, Sfax, Tunisia

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Kharrat, Najla
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Univ Sfax, CBS, Lab Mol & Cellular Screening Proc, BP 1177 3018, Sfax, Tunisia Univ Sfax, CBS, Biotechnol & Plant Improvement Lab, BP 1177 3018, Sfax, Tunisia

Masmoudi, Khaled
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Univ Sfax, CBS, Lab Mol & Cellular Screening Proc, BP 1177 3018, Sfax, Tunisia
United Arab Emirates Univ, Arid Land Dept, Coll Food & Agr, Al Ain, U Arab Emirates Univ Sfax, CBS, Biotechnol & Plant Improvement Lab, BP 1177 3018, Sfax, Tunisia

Yakoubi, Ines
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Univ Sfax, CBS, Biotechnol & Plant Improvement Lab, BP 1177 3018, Sfax, Tunisia Univ Sfax, CBS, Biotechnol & Plant Improvement Lab, BP 1177 3018, Sfax, Tunisia
机构:
[1] Univ Sfax, CBS, Biotechnol & Plant Improvement Lab, BP 1177 3018, Sfax, Tunisia
[2] Univ Sfax, CBS, Lab Mol & Cellular Screening Proc, BP 1177 3018, Sfax, Tunisia
[3] United Arab Emirates Univ, Arid Land Dept, Coll Food & Agr, Al Ain, U Arab Emirates
关键词:
LILY ASR PROTEIN;
WATER-DEFICIT;
SACCHAROMYCES-CEREVISIAE;
MOLECULAR-CLONING;
EXPRESSION;
DROUGHT;
RESISTANCE;
FAMILY;
MECHANISMS;
NETWORKS;
D O I:
10.1155/2020/7876357
中图分类号:
Q81 [生物工程学(生物技术)];
Q93 [微生物学];
学科分类号:
071005 ;
0836 ;
090102 ;
100705 ;
摘要:
In semiarid Mediterranean agroecosystems, drought and salinity are the main abiotic stresses hampering wheat productivity and yield instability. Abscisic acid, stress, and ripening (ASR) are small plant proteins and play important roles in different biological processes. In the present study, the TtASR1 gene was isolated and characterized for the first time from durum wheat (Tritucum turgidum L. subsp. durum). TtASR1 is a small gene, about 684 bp long, located on chromosome 4AL, encoding a protein of 136 amino acid residues consisting of a histidine-rich N terminus and C-terminal conserved ABA-WDS domain (Pfam PF02496). Our results showed that TtASR1 protein could function as a chaperone-like protein and improve the viability of E. coli under heat and cold stress and increase the Saccharomyces cerevisiae tolerance under salt and osmotic stress. Transcript expression patterns of TtASR1 revealed that ASRs play important roles in abiotic stress responses in diverse organs. Indeed, TtASR1 was upregulated in leaves by different developmental (ABA) and environmental signals (PEG, salt). In cv. Mahmoudi (salt-tolerant Tunisian durum landraces) roots, TtASR1 was upregulated by salt stress, while it was downregulated in cv. Azizi (salt-sensitive Tunisian durum landraces), supporting the implication of this gene in the salt tolerance mechanism. Taken together and after validation in the plant system, the TtASR1 gene may provide a potential functional marker for marker-assisted selection in a durum wheat breeding program for salt tolerance.
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