Expression Analysis of Genes Encoding NHX2 Antiporter and Subunit A of Vacuolar H+-ATPase Pump in Salt-Resistant and Salt-Sensitive Barley (Hordeum vulgare L.) Cultivars under Salt Stress


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Resumo

Salinity is one of the most important factors causing limiting growth aspects. Salinity tolerance is a multigenic trait activating mechanisms such as high H+ pumping activity, like NHX2 that is a tonoplast localized Na+/H+ exchanger and actively transfers the excess sodium ions from the cytoplasm into the vacuole. Vacuolar (v-) H+-ATPase pump is also a tonoplast localized, providing the ATP energy required for tonoplast antiporters. Evaluation of the expression level of HvNHX2 and subunit A of v-H+-ATPase (VHA-A) genes using real-time RT-PCR, in root and shoot tissue of salt-sensitive Reihan and salt-tolerant Afzal barley (Hordeum vulgare L.) cultivars under different salinity concentrations indicated that increasing the concentrations or duration of NaCl stress would decrease the K+/Na ratio that is a signal for cascade responses to the stress but fluctuated expression level of studied genes in some time point. However, promoter analysis of studied genes showed that both have CAAT, TATA and W-box promoter motifs which involve pathogen, salt and ABA-responsive signaling pathways but differed in TC-rich repeats, A-box, TCA-element and GARE-motif that may be one of the reason of observed different.

Sobre autores

F. Kargar

Institute of Biotechnology, College of Agriculture, Shiraz University

Autor responsável pela correspondência
Email: baharek98@gmail.com
Irã, Shiraz

A. Niazi

Institute of Biotechnology, College of Agriculture, Shiraz University

Email: baharek98@gmail.com
Irã, Shiraz

M. Fakhrfeshani

Department of Plant Biotechnology, Jahrom University

Email: baharek98@gmail.com
Irã, Jahrom

K. Malekzadeh

Department of Genetics and Crop Production, Faculty of Agriculture, Vali-e-Asr University

Email: baharek98@gmail.com
Irã, Rafsanjan

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