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Overexpression of wheat dehydrin DHN-5 enhances tolerance to salt and osmotic stress in Arabidopsis thaliana.
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- Plant Cell Reports, 2007, v. 26, n. 11, p. 2017, doi. 10.1007/s00299-007-0412-x
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- Article
The secretion of the bacterial phytase PHY- US417 by Arabidopsis roots reveals its potential for increasing phosphate acquisition and biomass production during co-growth.
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- Plant Biotechnology Journal, 2016, v. 14, n. 9, p. 1914, doi. 10.1111/pbi.12552
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- Article
Overexpression of wheat Na+/H+ antiporter TNHX1 and H+-pyrophosphatase TVP1 improve salt- and drought-stress tolerance in Arabidopsis thaliana plants.
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- Journal of Experimental Botany, 2007, v. 58, n. 2, p. 301, doi. 10.1093/jxb/erl251
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- Article
Wheat Type One Protein Phosphatase Participates in the Brassinosteroid Control of Root Growth via Activation of BES1.
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- International Journal of Molecular Sciences, 2021, v. 22, n. 19, p. 10424, doi. 10.3390/ijms221910424
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- Article
Characterization of Siccibacter sp. Strain C2 a Novel Rhizobacterium that Enhances Tolerance of Barley to Salt Stress.
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- Current Microbiology, 2022, v. 79, n. 8, p. 1, doi. 10.1007/s00284-022-02930-5
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- Article
Gene targeting in Arabidopsis.
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- Plant Journal, 2001, v. 28, n. 6, p. 671, doi. 10.1046/j.1365-313x.2001.01183.x
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- Article
Elevated levels of intrachromosomal homologous recombiation in Arabidopsis overexpressing the MIM gene.
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- Plant Journal, 2000, v. 24, n. 2, p. 183, doi. 10.1046/j.1365-313x.2000.00867.x
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- Article
Molecular and functional characterization of the durum wheat TdRL1, a member of the conserved Poaceae RSS1-like family that exhibits features of intrinsically disordered proteins and confers stress tolerance in yeast.
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- Functional & Integrative Genomics, 2015, v. 15, n. 6, p. 717, doi. 10.1007/s10142-015-0448-x
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- Article
Exploring seed characteristics and performance through advanced physico-chemical techniques.
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- Scientific Reports, 2024, v. 14, n. 1, p. 1, doi. 10.1038/s41598-024-75236-0
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- Article
The Halophyte Dehydrin Sequence Landscape.
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- Biomolecules (2218-273X), 2022, v. 12, n. 2, p. 330, doi. 10.3390/biom12020330
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- Article
From FHB Resistance QTLs to Candidate Genes Identification in Triticum aestivum L.
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- Interdisciplinary Sciences: Computational Life Sciences, 2016, v. 8, n. 4, p. 352, doi. 10.1007/s12539-016-0164-9
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- Article
TMKP1 is a novel wheat stress responsive MAP kinase phosphatase localized in the nucleus.
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- Plant Molecular Biology, 2010, v. 73, n. 3, p. 325, doi. 10.1007/s11103-010-9617-4
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- Article
The K-Segments of the Wheat Dehydrin DHN-5 are Essential for the Protection of Lactate Dehydrogenase and β-Glucosidase Activities In Vitro.
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- Molecular Biotechnology, 2013, v. 54, n. 2, p. 643, doi. 10.1007/s12033-012-9606-8
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- Article
Comparison of full-length and conserved segments of wheat dehydrin DHN-5 overexpressed in Arabidopsis thaliana showed different responses to abiotic and biotic stress.
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- Functional Plant Biology, 2016, v. 43, n. 11, p. 1048, doi. 10.1071/FP16134
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- Article
Phytase-producing rhizobacteria enhance barley growth and phosphate nutrition.
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- Frontiers in Sustainable Food Systems, 2024, p. 1, doi. 10.3389/fsufs.2024.1432599
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- Article
Over-expression of the Bacterial Phytase US417 in Arabidopsis Reduces the Concentration of Phytic Acid and Reveals Its Involvement in the Regulation of Sulfate and Phosphate Homeostasis and Signaling.
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- Plant & Cell Physiology, 2014, v. 55, n. 11, p. 1912, doi. 10.1093/pcp/pcu122
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- Article
Pleiotropic Effects of the Wheat Dehydrin DHN-5 on Stress Responses in Arabidopsis.
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- Plant & Cell Physiology, 2011, v. 52, n. 4, p. 676, doi. 10.1093/pcp/pcr030
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- Article
New Insights on Plant Salt Tolerance Mechanisms and Their Potential Use for Breeding.
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- Frontiers in Plant Science, 2016, v. 7, p. 1, doi. 10.3389/fpls.2016.01787
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- Article
Wheat Dehydrin DHN-5 Exerts a Heat-Protective Effect on β-Glucosidase and Glucose Oxidase Activities.
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- Bioscience, Biotechnology & Biochemistry, 2010, v. 74, n. 5, p. 1050, doi. 10.1271/bbb.90949
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- Article
The Activity of the Durum Wheat (Triticum durum L.) Catalase 1 (TdCAT1) Is Modulated by Calmodulin.
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- Antioxidants, 2022, v. 11, n. 8, p. N.PAG, doi. 10.3390/antiox11081483
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- Article
The wheat TdRL1 is the functional homolog of the rice RSS1 and promotes plant salt stress tolerance.
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- Plant Cell Reports, 2018, v. 37, n. 12, p. 1625, doi. 10.1007/s00299-018-2333-2
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- Article
The heat‐stable protein fraction from Opuntia ficus‐indica seeds exhibits an enzyme protective effect against thermal denaturation and an antibacterial activity.
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- Biotechnology & Applied Biochemistry, 2023, v. 70, n. 2, p. 593, doi. 10.1002/bab.2382
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Seed quality as a proxy of climate-ready orphan legumes: the need for a multidisciplinary and multi-actor vision.
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- Frontiers in Plant Science, 2024, p. 1, doi. 10.3389/fpls.2024.1388866
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- Article
Wheat Dehydrin K-Segments Ensure Bacterial Stress Tolerance, Antiaggregation and Antimicrobial Effects.
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- Applied Biochemistry & Biotechnology, 2015, v. 175, n. 7, p. 3310, doi. 10.1007/s12010-015-1502-9
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- Article
Characterization of wheat (Triticum aestivum) TIFY family and role of Triticum Durum TdTIFY11a in salt stress tolerance.
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- PLoS ONE, 2018, v. 13, n. 7, p. 1, doi. 10.1371/journal.pone.0200566
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- Article
Genome wide identification of wheat and Brachypodium type one protein phosphatases and functional characterization of durum wheat TdPP1a.
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- PLoS ONE, 2018, v. 13, n. 1, p. 1, doi. 10.1371/journal.pone.0191272
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- Article