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June 12, 2024Journal of Plant Interactions7 citationsOpen Access

Cloning and overexpression of the DREB30 gene enhances drought and osmotic stress tolerance in transgenic potato

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QAQurat- Ul Ain-AliFMFaiza MunirMTMuhammad Tahir

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Abstract

Potato is an extremely important food crop due to its high nutritional and economic value; however, this crop suffers losses due to water-deficient conditions. The aim of the study was to analyze the expression profiles of the StDREB30 gene and to study the enzymatic antioxidant system of transgenic potatoes under water-deficient situations. The results depicted that following drought and 20% polyethylene glycol 6000 stresses, transgenic plants showed vigorous growth, increased antioxidant activities, low malondialdehyde, and enhanced differential expression of StDREB30 in transgenics compared to control plants. Results suggest that StDREB30 overexpression mitigated the negative effects of water-deficit treatments by reducing oxidative damage in plants. Hence, the StDREB30 gene retains extensive potential for crop bioengineering to generate highly tolerant crop plants.

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Cite This Study

Ain-Ali et al. (2024) studied this question.

synapsesocial.com/papers/68e650a0b6db6435875e09bchttps://doi.org/10.1080/17429145.2024.2364656
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Comparison of Physiological and Transcriptional Modification of Osmotic Stress Tolerance Genes in Five Contrasting Promising Potato (S. tuberosum) Genotypes2026
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  3. 3Unveiling DREB30: A Key Player in Wheat's Battle Against Combined Drought and Heat Stress2024
  4. 4Heterologous Expression of Potato StCML19 Enhances Drought Tolerance in Transgenic Arabidopsis2026
  5. 5Integrated omics and functional validation identify StGDPD1 as a central regulator of salt stress tolerance in potato2026