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Overexpressing AtNHX1 and SOS1 simultaneously in Arabidopsis additively improve salt stresses tolerance.
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N. PEHLİVAN GEDİK Et Al. , "Overexpressing AtNHX1 and SOS1 simultaneously in Arabidopsis additively improve salt stresses tolerance.," Plant Biology , Minnessota, United States Of America, 2015

PEHLİVAN GEDİK, N. Et Al. 2015. Overexpressing AtNHX1 and SOS1 simultaneously in Arabidopsis additively improve salt stresses tolerance.. Plant Biology , (Minnessota, United States Of America).

PEHLİVAN GEDİK, N., SUN, L., Jarret, P., Sheng, G., Yang, X., & Zhang, H., (2015). Overexpressing AtNHX1 and SOS1 simultaneously in Arabidopsis additively improve salt stresses tolerance. . Plant Biology, Minnessota, United States Of America

PEHLİVAN GEDİK, NECLA Et Al. "Overexpressing AtNHX1 and SOS1 simultaneously in Arabidopsis additively improve salt stresses tolerance.," Plant Biology, Minnessota, United States Of America, 2015

PEHLİVAN GEDİK, NECLA P. Et Al. "Overexpressing AtNHX1 and SOS1 simultaneously in Arabidopsis additively improve salt stresses tolerance.." Plant Biology , Minnessota, United States Of America, 2015

PEHLİVAN GEDİK, N. Et Al. (2015) . "Overexpressing AtNHX1 and SOS1 simultaneously in Arabidopsis additively improve salt stresses tolerance.." Plant Biology , Minnessota, United States Of America.

@conferencepaper{conferencepaper, author={NECLA PEHLİVAN GEDİK Et Al. }, title={Overexpressing AtNHX1 and SOS1 simultaneously in Arabidopsis additively improve salt stresses tolerance.}, congress name={Plant Biology}, city={Minnessota}, country={United States Of America}, year={2015}}