2017
DOI: 10.9787/pbb.2017.5.1.1
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Overexpression of AtSZF2 from Arabidopsis Showed Enhanced Tolerance to Salt Stress in Soybean

Abstract: Plants have adapted to environmental challenges by expressing many plant genes in response to the stresses. Among those genes, CCCH zinc finger proteins are involved in abiotic and biotic stresses. Transgenic soybean plants overexpressing AtSZF2 were produced to investigate that its ectopic overexpression enhanced salt stress tolerance by Agrobacterium-mediated transformation using half-seed explants. Sixteen transgenic lines were chosen to analyze for T-DNA insertion and transcription levels, and most of them… Show more

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Cited by 21 publications
(13 citation statements)
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“…Melting curve analysis was applied to test the amplification specificity. Gene-specific primers of Radyukina et al ( 2011 ), Elansary et al ( 2017 ), and Kim et al ( 2017 ) were used for genes amplification. Actin (Radyukina et al, 2011 ) was used as a housekeeping gene, and the relative expression levels were determined using 2 −ΔΔCt method.…”
Section: Methodsmentioning
confidence: 99%
“…Melting curve analysis was applied to test the amplification specificity. Gene-specific primers of Radyukina et al ( 2011 ), Elansary et al ( 2017 ), and Kim et al ( 2017 ) were used for genes amplification. Actin (Radyukina et al, 2011 ) was used as a housekeeping gene, and the relative expression levels were determined using 2 −ΔΔCt method.…”
Section: Methodsmentioning
confidence: 99%
“…Reaction volume and PCR amplification conditions were adjusted as mentioned by El-Esawi et al [43]. Gene-specific primers of Sirhindi et al [68], Vaishnav et al [67], El-Esawi et al [69], and Kim et al [70] (Table S1) were used for genes amplification. A housekeeping gene, actin, was used.…”
Section: Expression Analysis Of Stress-related Genesmentioning
confidence: 99%
“…Enhanced osmotic adjustment, which helps maintain cellular osmotic balance, scavenge reactive oxygen species, and protect the antioxidation system, was achieved in soybean by overexpressing AtSZF2 (Kim et al, 2017) and Tbosm (Subramanyam et al, 2012). To produce yield in the field, the plants need to maintain their ability to emerge, grow, produce sufficient biomass, and seeds.…”
Section: Transgenic Soybean Did Not Outperform the Wild Type In Long-mentioning
confidence: 99%
“…Recently, transgenic soybeans have been developed to express individual genes targeting different mechanisms of tolerance, including osmotic adjustment, radical species removal, Na + uptake and transport, and stress-signaling regulation. Enhanced osmotic adjustment, which helps maintain cellular osmotic balance, scavenge reactive oxygen species, and protect the antioxidation system, was achieved in soybean by overexpressing AtSZF2 (Kim et al, 2017) and Tbosm (Subramanyam et al, 2012). AtSZF2, a CCCH Zn-finger protein, maintained greater cell membrane stability of the transgenic plants under salt and osmotic stress using leaf floating and the electrolyte conductivity method (Kim et al, 2017).…”
Section: Transgenic Soybean Did Not Outperform the Wild Type In Long-mentioning
confidence: 99%
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