3.
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Shokri-Gharelo, R.;Derakhti-Dizaji, M;Dadashi, D;Chalekaei, M;Rostami-Tobnag, G
2024. Bioinformatics and meta-analysis of expression data to investigate transcriptomic response of wheat root to abiotic stresses. biosystems، 237(105165)، 1-10
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4.
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Shokri-Gharelo, R.;Bandehagh, A;Anwar Hossain, M
2022. Proteomic Profiling and Protein-Protein Interaction Network Reveal the Molecular Mechanisms of Susceptibility to Drought Stress in Canola (Brassica napus L.).. phyton-international journal of experimental botany، 91(7)، 1-10
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5.
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Samaneh Eyvazlou;Ali Bandehagh;Majid Norouzi;Mahmoud Toorchi;Shokri-Gharelo, R.
2019. Proteomics analysis of canola seeds to identify differentially expressed proteins under salt stress. Journal of Plant Physiology and Breeding، 9(1)، 83-95
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6.
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Mahmoudi, B;Fayazi, J;Shokri-Gharelo, R.;Manafiazar, Gh
2019. Population genetic structure and performing assignment test on six Iranian native goats using simple sequence repeat markers. journal of central european agriculture، 20(1)، 74-92
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7.
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Shokri-Gharelo, R.;Moti Noparvar, P
2018. Molecular response of canola to salt stress: insights on tolerance mechanisms. peerj، 6(22)، 22-48
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8.
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Shokri-Gharelo, R.;Bandehagh, A;Mahmoudi, B;Moti-Noparvar, P
2017. In silico study of cis-acting elements revealing the plastid gene involved in oxidative phosphorylation are responsive to abiotic stresses. acta biologica szegediensis، 61(2)، 179-188
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9.
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Shokri-Gharelo, R.;Bandehagh, A;Toorchi, M;Farajzadeh, D
2016. Canola 2-dimensional Proteome Profile Under Osmotic Stress and Inoculation with Pseudomonas fluorescens FY32. plant cell biotechnology and molecular biology، 17(5)، 257-266
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