| Preface | HİKMET BUDAK, LUIGI CATTIVELLI, GERMAN SPANGENBERG | 1–2 |
| Aquaporins as targets for stress tolerance in plants: genomic complexity and perspectives | WONKEUN JOHN PARK,BENJAMIN TODD CAMPBELL | 879–886 |
| Metabolic and molecular-genetic regulation of proline signaling and itscross-talk with major effectors mediates abiotic stress tolerance in plants | ARYADEEP ROYCHOUDHURY,ADITYA BANERJEE,VIKRAMJIT LAHIRI | 887–910 |
| Genetic improvement of rice for biotic and abiotic stress tolerance | MAHMOOD UR RAHMAN ANSARI,Tayyaba SHAHEEN,SHAZAI BUKHARI,TAYYAB HUSNAIN | 911–919 |
| Recent advances in potato genomics, transcriptomics, and transgenicsunder drought and heat stresses: a review | Emre AKSOY,Ufuk DEMİREL,Zahide Neslihan ÖZTÜRK,Sevgi ÇALIŞKAN,Mehmet Emin ÇALIŞKAN | 920–940 |
| Activated expression of EsHD1 enhances drought tolerance in tobacco plants via mitigation of reactive oxygen species-mediated membrane damage | Cheng ZHOU,Zhongyou MA,Lin ZHU,Jiansheng GUO,Xianghuan CUI,Jian ZHU,Jianfei WANG | 941–951 |
| Expression profiling of PAP3, BZIP, and P5CS genes in soybean underdrought stress conditions | Valiollah SOLEIMANI,Jafar AHMADI,Saber GOLKARI,Behzad SADEGHZADEH | 952–961 |
| Soil bacteria conferred a positive relationship and improved salt stress tolerance in transgenic pea (Pisum sativum L.) harboring Na+/H+ antiporter | Zahid ALI,Nasr ULLAH,Saadia NASEEM,Muhammad İnam Ul HAQ,Hans Joerg JACOBSEN | 962–972 |
| Field assessment of CaMsrB2 transgenic lines in a drought stress environment | Zamin Shaheed SIDDIQUI,Jung İl CHO,Dan-be PARK,Gang-seob LEE,Tae-hun RYU,Huda SHAHID,Muhammad UMAR,Soo-chul PARK | 973–981 |
| Development of AFLP markers associated with zucchini yellow mosaicvirus resistance in cucumber (Cucumis sativus L.) | Hasan Özgür ŞIĞVA,Ahmet Fikret FIRAT,Gülden HAZARHUN,Ahmet İPEK | 982–987 |
| Overexpression of a soybean expansin gene, GmEXP1, improvesdrought tolerance in transgenic tobacco | Thanh Son LO,Hoang Duc LE,Vu Thanh Thanh NGUYEN,Hoang Ha CHU,Van Son LE,Hoang Mau CHU |