The durum wheat annexin, TdAnn6, improves salt and osmotic stress tolerance in Arabidopsis via modulation of antioxidant machinery

被引:0
|
作者
Marwa Harbaoui
Walid Ben Romdhane
Anis Ben Hsouna
Faiçal Brini
Rania Ben Saad
机构
[1] University of Sfax,Biotechnology and Plant Improvement Laboratory, Center of Biotechnology of Sfax
[2] King Saud University,Plant Production Department, College of Food and Agricultural Sciences
[3] Departments of Life Sciences,undefined
[4] Faculty of Sciences of Gafsa,undefined
来源
Protoplasma | 2021年 / 258卷
关键词
Abiotic stress; GUS activity; Wheat; Pr; promoter; Water-deficit stress;
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学科分类号
摘要
TdAnn6 is a gene encoding an annexin protein in durum wheat (Triticum durum). The function of TdAnn6 in plant response to stress is not yet clearly understood. Here, we isolated TdAnn6 and characterized it in genetically modified Arabidopsis thaliana. Expressing TdAnn6 in Arabidopsis coincided with an improvement in stress tolerance at germination and seedling stages. In addition, TdAnn6-expressing seedling antioxidant activities were improved with lower level of malondialdehyde, and enhanced transcript levels of six stress-related genes during salt/osmotic stresses. Under greenhouse conditions, the TdAnn6 plants exhibited increased tolerance to salt or drought stress. To deepen our understanding of TdAnn6 function, we isolated a 1515-bp genomic fragment upstream of its coding sequence, designated as PrTdAnn6. The PrTdAnn6 promoter was fused to the β-glucuronidase reporter gene and transferred to Arabidopsis. By histochemical GUS staining, GUS activity was detected in the roots, leaves, and floral organs, but no activity was detected in the seeds. Furthermore, we noticed a high stimulation of promoter activity when A. thaliana seedlings were exposed to NaCl, mannitol, ABA, GA, and cold conditions. This cross-talk between tissue-specific expression and exogenous stress stimulation may provide additional layers of regulation for salt and osmotic stress responses in crops.
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页码:1047 / 1059
页数:12
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