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Articles citing this paper

Genetic variation for improving the salt tolerance of durum wheat

R. Munns, R. A. Hare, R. A. James and G. J. Rebetzke
51(1) pp.69 - 74


186 articles found in Crossref database.

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Nuttall J. G., Armstrong R. D., Connor D. J.
Australian Journal of Agricultural Research. 2005 56(2). p.113
Advances in Molecular Breeding Toward Drought and Salt Tolerant Crops (2007)
Tuberosa Roberto, Salvi Silvio
Encyclopedia of Sustainability Science and Technology (2019)
Alqahtani Mashael, Roy Stuart J., Tester Mark
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Kondić-Špika Ankica, Trkulja Dragana, Brbaklić Ljiljana, Mikić Sanja, Glogovac Svetlana, Johansson Eva, Alemu Admas, Chawade Aakash, Rahmatov Mahbubjon, Ibba Maria Itria
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Liu Na, Liu Shuwei, Gan Yandong, Zhang Qihui, Wang Xiaowan, Liu Siyv, Dai Jiulan
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Hussain Sajjad, Khalid Muhammad Fasih, Sohail Muhammad, Anjum Muhammad Akbar, Ejaz Shaghef, Nafees Muhammad, Zakir Iqra, Ahmad Maqsood, Ali Sajid, Ahmad Shakeel
Applied Mathematics and Omics to Assess Crop Genetic Resources for Climate Change Adaptive Traits (2016)
Chaabane R, Saidi A, Moufida S, Chaabane S, Sayouri S, Rouissi M, Naceur A, Inagaki M, Bchini H, Naceur M, Ayadi I, Bari A
Morphological and metabolic responses to salt stress of rice (Oryza sativa L.) cultivars which differ in salinity tolerance
Chang Jing, Cheong Bo Eng, Natera Siria, Roessner Ute
Plant Physiology and Biochemistry. 2019 144 p.427
Potential of tetraploid wheats in plant breeding: A review
Mohammadi Majid, Mohammadi Reza
Plant Science. 2024 346 p.112155
Plant Salt Tolerance (2012)
Ashraf M., Akram N. A., Mehboob-ur-Rahman , Foolad M. R.
Salinity Tolerance in Brassica Oilseeds
Ashraf M., McNeilly T.
Critical Reviews in Plant Sciences. 2004 23(2). p.157
Genetic variation in tolerance to the osmotic stress componentof salinity stress in durum wheat
James Richard A., von Caemmerer Susanne, Condon A. G. (Tony), Zwart Alexander B., Munns Rana
Functional Plant Biology. 2008 35(2). p.111
Photosynthetic Response of Elephant Grass (Pennisetum purpureum) to NaCl Salinity
AL-Shoaibi Abdulkhaliq A.
Journal of Biological Sciences. 2008 8(3). p.610
Crop Science (2019)
Alqahtani Mashael, Roy Stuart J., Tester Mark
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Parul , Kumar Arvind, Chourasia Shiksha, Kumar Raj, Devi Geeta, Kumar Ashwani, Mann Anita, Sheoran Parvender, Sanwal Satish Kumar
Salt Tolerance of Seedling and Adult Bread Wheat Plants Based on Ion Contents and Agronomic Traits
Dehdari Ashkboos, Rezai Abdolmajid, Maibody Seyed Ali Mirmohammady
Communications in Soil Science and Plant Analysis. 2005 36(15-16). p.2239
Salt-induced changes in photosynthetic activity and growth in a potential medicinal plant Bishop's weed (Ammi majus L.)
Ashraf M., Mukhtar N., Rehman S., Rha E. S.
Photosynthetica. 2004 42(4). p.543
Growth Properties and Ion Distribution in Different Tissues of Bread Wheat Genotypes (Triticum aestivum L.) Differing in Salt Tolerance
Rahnama A., Poustini K., Tavakkol-Afshari R., Ahmadi A., Alizadeh H.
Journal of Agronomy and Crop Science. 2011 197(1). p.21
Salt-affected Soils and Marginal Waters (2021)
Chhabra Ranbir
Salinity and Water Stress (2009)
Farooq S.
(2019)
Mujeeb-Kazi Abdul, Munns Rana, Rasheed Awais, Ogbonnaya Francis C., Ali Niaz, Hollington Philip, Dundas Ian, Saeed Nasir, Wang Richard, Rengasamy Pichu, Saddiq Muhammad Sohail, Díaz De León Jose Luis, Ashraf Muhammad, Rajaram Sanjaya
Differences in dry matter production, grain production, and photosynthetic rate in barley cultivars under long-term salinity
Hirasawa Tadashi, Sato Kosuke, Yamaguchi Makoto, Narita Ryohei, Kodama Asuka, Adachi Shunsuke, Ookawa Taiichiro, Sato Kazuhiro
Plant Production Science. 2017 20(3). p.288
Genotypic difference in salinity tolerance during early vegetative growth of cowpea (Vigna unguiculata L. Walp.) from Myanmar
Win Khin Thuzar, Oo Aung Zaw
Biocatalysis and Agricultural Biotechnology. 2015 4(4). p.449
A root's ability to retain K+ correlates with salt tolerance in wheat
Cuin T. A., Betts S. A., Chalmandrier R., Shabala S.
Journal of Experimental Botany. 2008 59(10). p.2697
Impact of irrigation water salinity on agronomical and quality attributes of Cenchrus ciliaris L. accessions
Al-Dakheel Abdullah J., Iftikhar Hussain M., Abdul Rahman Abdul Qader M.
Agricultural Water Management. 2015 159 p.148
Na+ exclusion and salt resistance of wheat (Triticum aestivum) in saline-waterlogged conditions are improved by the development of adventitious nodal roots and cortical root aerenchyma
Saqib M., Akhtar J., Qureshi R.H.
Plant Science. 2005 169(1). p.125
Plant Breeding Reviews (2010)
Dwivedi Sangam, Upadhyaya Hari, Subudhi Prasanta, Gehring Chris, Bajic Vladimir, Ortiz Rodomiro
Physiological, biochemical and molecular responses of durum wheat under salt stress
Momeni Mohammad Mehdi, Kalantar Mansoor, Dehghani-Zahedani Mahdi
Plant Genetic Resources: Characterization and Utilization. 2021 19(2). p.93
Salinity Stress in Wheat: Effects, Mechanisms and Management Strategies
F. Seleiman Mahmoud, Talha Aslam Muhammad, Ahmed Alhammad Bushra, Umair Hassan Muhammad, Maqbool Rizwan, Umer Chattha Muhammad, Khan Imran, Ireri Gitari Harun, S. Uslu Omer, Roy Rana, Leonardo Battaglia Martin
Phyton. 2022 91(4). p.667
Adaptive mechanisms of tall wheatgrass to salinity and alkalinity stress
Andrioli Romina Jessica
Grass and Forage Science. 2023 78(1). p.23
Sustainable Food Production (2013)
Roy Stuart J., Tester Mark
Variation in salinity tolerance and shoot sodium accumulation in Arabidopsis ecotypes linked to differences in the natural expression levels of transporters involved in sodium transport
JHA D., SHIRLEY N., TESTER M., ROY S. J.
Plant, Cell & Environment. 2010 33(5). p.793
Differential Expression of the TFIIIA Regulatory Pathway in Response to Salt Stress between Medicago truncatula Genotypes
de Lorenzo Laura, Merchan Francisco, Blanchet Sandrine, Megías Manuel, Frugier Florian, Crespi Martin, Sousa Carolina
Plant Physiology. 2007 145(4). p.1521
NaCl Effects on Accumulation of Minerals (Na+, K+, Cl¯) and Proline in Triticum turgidum L.
Hadi M.R., Khavarinej R., Ghoshkolgh N.A.
Asian Journal of Plant Sciences. 2007 6(2). p.379
Estimation of salt tolerance in Andrographis paniculata accessions using multiple regression model
Talei Daryush, Valdiani Alireza, Yusop Mohd Khanif, Abdullah Mohd Puad
Euphytica. 2013 189(1). p.147
Allelic variations and differential expressions detected at quantitative trait loci for salt stress tolerance in wheat
Oyiga Benedict C., Sharma Ram C., Baum Michael, Ogbonnaya Francis C., Léon Jens, Ballvora Agim
Plant, Cell & Environment. 2018 41(5). p.919
Abiotic Stress Responses in Plants (2012)
Karan Ratna, Subudhi Prasanta K.
Climate Change and Food Security with Emphasis on Wheat (2020)
Hasan Humna, Ali Mohsin, Javaid Ayesha, Liaqat Ayesha, Hussain Sidra, Siddique Raffia, Fayaz Tayyaba, Gul Alvina
Evaluating salt tolerance of wheat genotypes using multiple parameters
El-Hendawy Salah E., Hu Yuncai, Yakout Gamal M., Awad Ahmed M., Hafiz Salah E., Schmidhalter Urs
European Journal of Agronomy. 2005 22(3). p.243
Abiotic Stresses in Wheat (2023)
Venkatesan Suhasini, Patil Ravindra, Oak Manoj D.
Use of genetic tolerance in grain crops to overcome subsoil constraints in alkaline cropping soils
Nuttall J. G., Hobson K. B., Materne M., Moody D. B., Munns R., Armstrong R. D.
Soil Research. 2010 48(2). p.188
Strategies and methods for studying the rhizosphere—the plant science toolbox
Neumann Günter, George Timothy S., Plassard Claude
Plant and Soil. 2009 321(1-2). p.431
Salt stress manifestation on plants, mechanism of salt tolerance and potassium role in alleviating it: a review
Abbasi Hassan, Jamil Moazzam, Haq Anwar, Ali Shafaqat, Ahmad Rafiq, Malik Zafar, Parveen
Zemdirbyste-Agriculture. 2016 103(2). p.229
Approaches to increasing the salt tolerance of wheat and other cereals
Munns Rana, James Richard A., Läuchli André
Journal of Experimental Botany. 2006 57(5). p.1025
Salt tolerance in wild Hordeum species is associated with restricted entry of Na+ and Cl− into the shoots
Garthwaite Alaina J., von Bothmer Roland, Colmer Timothy D.
Journal of Experimental Botany. 2005 56(419). p.2365
Shaping polyploid wheat for success: Origins, domestication, and the genetic improvement of agronomic traits
Liu Jie, Yao Yingyin, Xin Mingming, Peng Huiru, Ni Zhongfu, Sun Qixin
Journal of Integrative Plant Biology. 2022 64(2). p.536
Stomatal conductance as a screen for osmotic stress tolerance in durum wheat growing in saline soil
Rahnama Afrasyab, James Richard A., Poustini Kazem, Munns Rana
Functional Plant Biology. 2010 37(3). p.255
Salt stress effects on growth, ion accumulation and seed oil concentration in an arid zone traditional medicinal plant ajwain (Trachyspermum ammi [L.] Sprague)
Ashraf M., Orooj A.
Journal of Arid Environments. 2006 64(2). p.209
Principal component analysis approach for comprehensive screening of salt stress-tolerant tomato germplasm at the seedling stage
Sivakumar J, Prashanth John Elia P, Rajesh N, Reddy Sridhar M, Pinjari Osman Basha
Journal of Biosciences. 2020 45(1).
A cytological and molecular analysis of D-genome chromosome retention following F2–F6 generations of hexaploid×tetraploid wheat crosses
Padmanaban Sriram, Zhang Peng, Sutherland Mark W., Knight Noel L., Martin Anke
Crop and Pasture Science. 2018 69(2). p.121
Contrasting leaf Na+uptake and transport rates conferred differences in salt tolerance of wheat genotypes
Saqib Zulfiqar Ahmad, Akhtar Javaid, Saqib Muhammad, Ahmad Riaz
Acta Agriculturae Scandinavica, Section B - Plant Soil Science. 2011 61(2). p.129
Salinity tolerance and sodium exclusion in genus Triticum
Shavrukov Yuri, Langridge Peter, Tester Mark
Breeding Science. 2009 59(5). p.671
Molecular cloning, expression and mapping of the translational initiation factor eIF1 gene in Oryza sativa
Rangan Latha, Rout Anusuya, Sudarshan Medhavi, Gregorio Glenn
Functional Plant Biology. 2009 36(5). p.442
Molecular Stress Physiology of Plants (2013)
Redondo-Gómez Susana
Subsoil constraints to grain production in the cropping soils of the north-eastern region of Australia: an overview
Dang Y. P., Dalal R. C., Routley R., Schwenke G. D., Daniells I.
Australian Journal of Experimental Agriculture. 2006 46(1). p.19
Sustainable Energy-Water-Environment Nexus in Deserts (2022)
Benderradji Laid, Messaoudi Noura, Elhadef Elokki Lydia, Ghadbane Mouloud, Medjekal Samir, Brini Faiçal
Effects of Salinity and Drought Stress on Grain Quality of Durum Wheat
Houshmand S., Arzani A., Mirmohammadi-Maibody S. A. M.
Communications in Soil Science and Plant Analysis. 2014 45(3). p.297
Potassium transport and plant salt tolerance
Shabala Sergey, Cuin Tracey A.
Physiologia Plantarum. 2008 133(4). p.651
Effects of potassium and zinc on physiology and chlorophyll fluorescence of two cultivars of canola grown under salinity stress
Khadem Moghadam Nader, Motesharezadeh Babak, Maali-Amiri Reza, Asgari Lajayer Behnam, Astatkie Tess
Arabian Journal of Geosciences. 2020 13(16).
Evaluation of Biochemical Response and Defense Mechanism of Wheat Antioxidant Enzymes to Salinity Stress
Khodavirdivand Keshtiban Rasoul, Soltanloo Hassan, Ramazanpour Seyedeh Sanaz, Shariati Vahid
Journal of Crop Breeding. 2020 12(36). p.90
Durum and Bread Wheat Differ in Their Ability to Retain Potassium in Leaf Mesophyll: Implications for Salinity Stress Tolerance
Wu Honghong, Shabala Lana, Zhou Meixue, Shabala Sergey
Plant and Cell Physiology. 2014 55(10). p.1749
Differential Response of Salt-Tolerant and Susceptible Barley Genotypes to Salinity Stress
Tavakoli F., Vazan S., Moradi F., Shiran B., Sorkheh K.
Journal of Crop Improvement. 2010 24(3). p.244
Encyclopedia of Sustainability Science and Technology (2012)
Roy Stuart J., Tester Mark
Sodium Chloride Salt Tolerance Evaluation and Classification of Spring Rapeseed (Brassica napus L.)
Keshavarzian Mehdi, Toorchi Mahmoud, Shakiba Mohammad Reza
Journal of Crop Breeding. 2019 11(32). p.154
From RFLP to DArT: molecular tools for wheat (Triticum spp.) diversity analysis
Khan Mohd. Kamran, Pandey Anamika, Choudhary Saumya, Hakki Erdogan E., Akkaya Mahinur S., Thomas George
Genetic Resources and Crop Evolution. 2014 61(5). p.1001
Wheat Production in Changing Environments (2019)
Rustamova Samira Mahammadrahim, Suleymanova Zarifa Jahandar, Isgandarova Turana Yashar, Zulfugarova Saida Tofig, Mammadov Alamdar Charkaz, Huseynova Irada Mammad
Multi-locus genome-wide association studies reveal novel genomic regions associated with vegetative stage salt tolerance in bread wheat (Triticum aestivum L.)
Chaurasia Shiksha, Singh Amit Kumar, Songachan L.S., Sharma Axma Dutt, Bhardwaj Rakesh, Singh Kuldeep
Genomics. 2020 112(6). p.4608
Pulse ideotypes for abiotic constraint alleviation in Australia
Rao Shiwangni, Silva-Perez Viridiana, Armstrong Roger, Tefera Abeya Temesgen, Brand Jason, Riffkin Penny, Rosewarne Garry
Plant and Soil. 2023 492(1-2). p.1
Xylem ionic relations and salinity tolerance in barley
Shabala Sergey, Shabala Svetlana, Cuin Tracey A., Pang Jiayin, Percey William, Chen Zhonghua, Conn Simon, Eing Christian, Wegner Lars H.
The Plant Journal. 2010 61(5). p.839
Genetic approaches to exploit landraces for improvement of Triticum turgidum ssp. durum in the age of climate change
Broccanello Chiara, Bellin Diana, DalCorso Giovanni, Furini Antonella, Taranto Francesca
Frontiers in Plant Science. 2023 14
Some important physiological selection criteria for salt tolerance in plants
Ashraf Muhammad
Flora - Morphology, Distribution, Functional Ecology of Plants. 2004 199(5). p.361
K+/Na+ discrimination in synthetic hexaploid wheat lines: Transfer of the trait for K+/Na+ discrimination from Aegilops tauschii into a Triticum turgidum background
Pritchard D. J., Hollington P. A., Davies W. P., Gorham J., Leon J. L. de Diaz, Mujeeb-Kazi A.
Cereal Research Communications. 2002 30(3-4). p.261
Salt tolerance in Argentine wheatgrass is related to shoot sodium exclusion
Zabala Juan M., Marinoni Lorena del R., Taleisnik Edith L., Ribero Gustavo, Schrauf Gustavo E.
Crop Science. 2020 60(5). p.2437
Evolution of Approaches to Increase the Salt Tolerance of Crops
Ashraf M., Munns R.
Critical Reviews in Plant Sciences. 2022 41(2). p.128
Assessment for salinity tolerance through intergeneric hybridisation: Triticum durum × Aegilops speltoides
Noori Seyed Ahmad Sadat
Euphytica. 2005 146(1-2). p.149
Physiology and Molecular Biology of Stress Tolerance in Plants (2006)
DAJIC ZORA
Salinity tolerance and Na+ exclusion in wheat: variability, genetics, mapping populations and QTL analysis
SHAVRUKOV Y., SHAMAYA N., BAHO M., EDWARDS J., RAMSEY C., NEVO E., LANGRIDGE P., TESTER M.
Czech Journal of Genetics and Plant Breeding. 2011 47(Special Issue). p.S85
Growth, Physiological, and Photosynthetic Responses of Xanthoceras sorbifolium Bunge Seedlings Under Various Degrees of Salinity
Zong Jian-Wei, Zhang Zhi-Long, Huang Pei-Lu, Chen Nai-Yu, Xue Ke-Xin, Tian Zhi-Yong, Yang Yu-Hua
Frontiers in Plant Science. 2021 12
Growth response, carbohydrate and ion accumulation of diverse perennial ryegrass accessions to increasing salinity
Tang Jinchi, Camberato James J., Yu Xiaoqing, Luo Na, Bian Shaomin, Jiang Yiwei
Scientia Horticulturae. 2013 154 p.73
Induction of salt tolerance in Azolla microphylla Kaulf through modulation of antioxidant enzymes and ion transport
Abraham Gerard, Dhar Dolly Wattal
Protoplasma. 2010 245(1-4). p.105
The Na+ transporter, TaHKT1;5‐D, limits shoot Na+ accumulation in bread wheat
Byrt Caitlin Siobhan, Xu Bo, Krishnan Mahima, Lightfoot Damien James, Athman Asmini, Jacobs Andrew Keith, Watson‐Haigh Nathan S., Plett Darren, Munns Rana, Tester Mark, Gilliham Matthew
The Plant Journal. 2014 80(3). p.516
Wheat Production in Stressed Environments (2007)
Millar A. L., Rathjen A. J., Cooper D. S.
Sodicity Intensifies the Effect of Salinity on Grain Yield and Yield Components of Wheat
Saqib Muhammad, Akhtar Javaid, Qureshi Riaz Hussain
Journal of Plant Nutrition. 2008 31(4). p.689
Genetics of Na+ exclusion and salinity tolerance in Afghani durum wheat landraces
Shamaya Nawar Jalal, Shavrukov Yuri, Langridge Peter, Roy Stuart John, Tester Mark
BMC Plant Biology. 2017 17(1).
Evaluation of salt resistance mechanisms of grapevine hybrid rootstocks
Fu Qing-qing, Tan Ya-zhong, Zhai Heng, Du Yuan-peng
Scientia Horticulturae. 2019 243 p.148
Climate Change and Agriculture (2022)
Cvejić Sandra, Jocić Siniša, Mitrović Bojan, Bekavac Goran, Mirosavljević Milan, Jeromela Ana Marjanović, Zorić Miroslav, Radanović Aleksandra, Kondić‐Špika Ankica, Miladinović Dragana
The response of genetically distinct bread wheat genotypes to salinity stress
Ali Zulfiqar, Salam Abdus, Azhar Faqir Muhammad, Khan Iftikhar Ahmad, Khan Asif Ali, Bahadur Sultan, Mahmood Tariq, Ahmad Ashfaq, Trethowan Richard
Plant Breeding. 2012 131(6). p.707
Identification of novel source of salt tolerance in local bread wheat germplasm using morpho-physiological and biochemical attributes
Hussain Nadeem, Ghaffar Abdul, Zafar Zafar Ullah, Javed Muhammad, Shah Kausar Hussain, Noreen Sibgha, Manzoor Hamid, Iqbal Muhammad, Hassan Islam Frahat Zaky, Bano Hussan, Gul Hafiza Saima, Aamir Misbah, Khalid Ayesha, Sohail Younas, Ashraf Muhammad, Athar Habib-ur-Rehman
Scientific Reports. 2021 11(1).
Biological nitrification inhibition (BNI)-Is there potential for genetic interventions in the Triticeae?
Subbarao Guntur Venkata, Kishii Masahiro, Nakahara Kazuhiko, Ishikawa Takayuki, Ban Tomohiro, Tsujimoto Hisashi, George Timothy S., Berry Wade L., Hash C. Tom, Ito Osamu
Breeding Science. 2009 59(5). p.529
Wheat Production in Changing Environments (2019)
Srivastava Neerja
EFFECT OF SALT STRESS ON RESPIRATION OF VARIOUS WHEAT LINES/CULTIVARS AT EARLY GROWTH STAGES
Shekoofa A., Bijanzadeh E., Emam Y., Pessarakli M.
Journal of Plant Nutrition. 2013 36(2). p.243
Combined Effect of Water Deficit and Salt Stress on the Structure of Mesophyll Cells in Wheat Seedlings
Semenova Galina, Fomina Irina, Ivanov Anatoly
CellBio. 2014 03(01). p.14
Back into the wild—Apply untapped genetic diversity of wild relatives for crop improvement
Zhang Hengyou, Mittal Neha, Leamy Larry J., Barazani Oz, Song Bao‐Hua
Evolutionary Applications. 2017 10(1). p.5
Stress Responses in Plants (2015)
Lodeyro Anabella Fernanda, Carrillo Néstor
Genetic Opportunities to Improve Cereal Root Systems for Dryland Agriculture
Richards Richard A.
Plant Production Science. 2008 11(1). p.12
Wild halophytic species as forage sources: Key aspects for plant breeding
Marinoni Lorena del Rosario, Zabala Juan Marcelo, Taleisnik Edith Liliana, Schrauf Gustavo Enrique, Richard Geraldina Alicia, Tomas Pablo Andrés, Giavedoni Julio Alberto, Pensiero José Francisco
Grass and Forage Science. 2019 74(3). p.321
Soil salinity as a selection pressure is a key determinant for the evolution of salt tolerance in Blue Panicgrass (Panicum antidotale Retz.)
Ahmad Muhammad Sajid Aqeel, Ashraf Muhammad, Ali Qasim
Flora - Morphology, Distribution, Functional Ecology of Plants. 2010 205(1). p.37
Plant Responses to Drought and Salinity Stress - Developments in a Post-Genomic Era (2011)
Shabala Sergey, Mackay Alex
Identification of Genomic Regions Associated with Agronomical Traits of Bread Wheat Under Two Levels of Salinity Using GWAS
Alotaibi Fahad S., Al-Qthanin Rahmah N., Aljabri Maha, Shehzad Tariq, Albaqami Mohammed, Abou-Elwafa Salah Fatouh
Plant Molecular Biology Reporter. 2022 40(3). p.595
In vitro Şartlar Altında 'Bursa Siyahı' (Ficus carica L.) İncir Çeşidinin Morfolojisi Üzerine Tuzun Etkisi
emek yelda
Kahramanmaraş Sütçü İmam Üniversitesi Doğa Bilimleri Dergisi. 2018
Comparison of Salt Stress Tolerance among Two Leaf and Six Grain Cultivars of Amaranthus cruentus L.
Luyckx Adrien, Lutts Stanley, Quinet Muriel
Plants. 2023 12(18). p.3310
Variation in salinity tolerance and shoot sodium accumulation inArabidopsisecotypes linked to differences in the natural expression levels of transporters involved in sodium transport
JHA D., SHIRLEY N., TESTER M., ROY S. J.
Plant, Cell & Environment. 2010
Innovative Saline Agriculture (2016)
Dagar J. C., Sharma P. C., Chaudhari S. K., Jat H. S., Ahamad Sharif
Effect of salt stress on cucumber: Na+–K+ ratio, osmolyte concentration, phenols and chlorophyll content
Tiwari Jagesh K., Munshi Anilabh D., Kumar Ravinder, Pandey Raghu N., Arora Ajay, Bhat Jayant S., Sureja Amish Kumar
Acta Physiologiae Plantarum. 2010 32(1). p.103
Improving salt tolerance of wheat and barley: future prospects
Colmer T. D., Munns R., Flowers T. J.
Australian Journal of Experimental Agriculture. 2005 45(11). p.1425
Combined use of δ13C, δ18O and δ15N tracks nitrogen metabolism and genotypic adaptation of durum wheat to salinity and water deficit
Yousfi Salima, Serret Maria Dolores, Márquez Antonio José, Voltas Jordi, Araus José Luis
New Phytologist. 2012 194(1). p.230
Improving crop salt tolerance
Flowers T. J.
Journal of Experimental Botany. 2004 55(396). p.307
Potassium and sodium relations in salinised barley tissues as a basis of differential salt tolerance
Chen Zhonghua, Zhou Meixue, Newman Ian A., Mendham Neville J., Zhang Guoping, Shabala Sergey
Functional Plant Biology. 2007 34(2). p.150
Variation in salt tolerance within a Georgian wheat germplasm collection
Badridze G., Weidner A., Asch F., Börner A.
Genetic Resources and Crop Evolution. 2009 56(8). p.1125
A locus for sodium exclusion (Nax1), a trait for salt tolerance, mapped in durum wheat
Lindsay Megan P., Lagudah Evans S., Hare Ray A., Munns Rana
Functional Plant Biology. 2004 31(11). p.1105
Proteome analysis of wheat leaf under salt stress by two-dimensional difference gel electrophoresis (2D-DIGE)
Gao L., Yan X., Li X., Guo G., Hu Y., Ma W., Yan Y.
Phytochemistry. 2011 72(10). p.1180
Wheat cultivars can be screened for NaCl salinity tolerance by measuring leaf chlorophyll content and shoot sap potassium
Cuin Tracey Ann, Parsons David, Shabala Sergey
Functional Plant Biology. 2010 37(7). p.656
Salinity Resilience and Sustainable Crop Production Under Climate Change (2023)
Awaad Hassan Auda
Wide genetic diversity of salinity tolerance, sodium exclusion and growth in wild emmer wheat, Triticum dicoccoides
Shavrukov Yuri, Langridge Peter, Tester Mark, Nevo Eviatar
Breeding Science. 2010 60(4). p.426
Quantitative trait loci associated with salinity tolerance in field grown bread wheat
Díaz De León José Luis, Escoppinichi Ricardo, Geraldo Nadia, Castellanos Thelma, Mujeeb-Kazi Abdul, Röder Marion S.
Euphytica. 2011 181(3). p.371
SUSCEPTIBILITY OF THOMPSON SEEDLESS GRAPEVINES RAISED ON DIFFERENT ROOTSTOCKS TO LEAF BLACKENING AND NECROSIS UNDER SALINE IRRIGATION
Sharma Jagdev, Upadhyay Ajay Kumar, Bande Dnyanesh, Patil Sarika D.
Journal of Plant Nutrition. 2011 34(11). p.1711
Responses of leaf growth and gas exchanges to salt stress during reproductive stage in wild wheat relative Aegilops geniculata Roth. and wheat (Triticum durum Desf.)
Mguis Khaled, Albouchi Ali, Abassi Mejda, Khadhri Ayda, Ykoubi-Tej Mbarka, Mahjoub Asma, Brahim Nadia Ben, Ouerghi Zeineb
Acta Physiologiae Plantarum. 2013 35(5). p.1453
Pentaploid Wheat Hybrids: Applications, Characterisation, and Challenges
Padmanaban Sriram, Zhang Peng, Hare Ray A., Sutherland Mark W., Martin Anke
Frontiers in Plant Science. 2017 8
Wheat Production in Changing Environments (2019)
Talaat Neveen B.
Variability in salt tolerance of native populations of Elymus scabrifolius (Döll) J. H. Hunz from Argentina
Zabala J. M., Taleisnik E., Giavedoni J. A., Pensiero J. F., Schrauf G. E.
Grass and Forage Science. 2011 66(1). p.109
Comprehensive evaluating of wild and cultivated emmer wheat (Triticum turgidum L.) genotypes response to salt stress
Feng Kewei, Cui Licao, Lv Shuzuo, Bian Jianxin, Wang Meng, Song Weining, Nie Xiaojun
Plant Growth Regulation. 2018 84(2). p.261
Response of the Durum Wheat Cultivar Um Qais (Triticum turgidum subsp. durum) to Salinity
Hamdi Luma, Suleiman Ayman, Hoogenboom Gerrit, Shelia Vakhtang
Agriculture. 2019 9(7). p.135
Molecular characterization and functional analysis of a vacuolar Na+/H+ antiporter gene (HcNHX1) from Halostachys caspica
Guan Bo, Hu Youzhen, Zeng Youling, Wang Yan, Zhang Fuchun
Molecular Biology Reports. 2011 38(3). p.1889
A survey of β‐glucan and arabinoxylan content in wheat
Pritchard Jenifer R, Lawrence Gregory J, Larroque Oscar, Li Zhongyi, Laidlaw Hunter KC, Morell Matthew K, Rahman Sadequr
Journal of the Science of Food and Agriculture. 2011 91(7). p.1298
Mechanisms of sodium uptake by roots of higher plants
Zhang Jin-Lin, Flowers Timothy J., Wang Suo-Min
Plant and Soil. 2010 326(1-2). p.45
Improving salinity tolerance in crop plants: a biotechnological view
Arzani Ahmad
In Vitro Cellular & Developmental Biology - Plant. 2008 44(5). p.373
Introgression of a 4D chromosomal fragment into durum wheat confers aluminium tolerance
Han Chang, Ryan Peter R., Yan ZeHong, Delhaize Emmanuel
Annals of Botany. 2014 114(1). p.135
Genes and salt tolerance: bringing them together
Munns Rana
New Phytologist. 2005 167(3). p.645
Subsoil constraints in Vertosols: crop water use, nutrient concentration, and grain yields of bread wheat, durum wheat, barley, chickpea, and canola
Dang Y. P., Routley R., McDonald M., Dalal R. C., Singh D. K., Orange D., Mann M.
Australian Journal of Agricultural Research. 2006 57(9). p.983
Biotechnology: Prospects and Applications (2013)
Rana Veenti, Ram Sewa, Nehra Kiran
Salinity Resilience and Sustainable Crop Production Under Climate Change (2023)
Awaad Hassan Auda
Influence of Salt Stress on Growth, Ion Accumulation and Seed Oil Content in Sweet Fennel
Ashraf M., Akhtar N.
Biologia plantarum. 2004 48(3). p.461
Effects of Salt Stress on Yield, Yield Components and Carbohydrates Content in Four Hullless Barley (Hordeum vulgare L.) Cultivars
Bagheri A., Sadeghipou O.
Journal of Biological Sciences. 2009 9(8). p.909
Effectiveness of native and exotic arbuscular mycorrhizal fungi on nutrient uptake and ion homeostasis in salt-stressed Cajanus cajan L. (Millsp.) genotypes
Garg Neera, Pandey Rekha
Mycorrhiza. 2015 25(3). p.165
Salt Tolerance and K/Na Ratio of Some Introduced Forage Grass Species Under Salinity Stress in Irrigated Areas
Al-Ghumaiz N. S., Abd-Elmoniem E. M., Motawei M. I.
Communications in Soil Science and Plant Analysis. 2017 48(12). p.1494
Screening sorghum genotypes for salinity tolerant biomass production
Krishnamurthy L., Serraj Rachid, Hash C. Tom, Dakheel Abdullah J., Reddy Belum V. S.
Euphytica. 2007 156(1-2). p.15
Breeding for abiotic stresses for sustainable agriculture
Witcombe J.R, Hollington P.A, Howarth C.J, Reader S, Steele K.A
Philosophical Transactions of the Royal Society B: Biological Sciences. 2008 363(1492). p.703
Salinity Tolerance in Phaseolus Species during Early Vegetative Growth
Bayuelo‐Jiménez Jeannette S., Debouck Daniel G., Lynch Jonathan P.
Crop Science. 2002 42(6). p.2184
Physiological and Molecular Responses to Salt Stress in Wild Emmer and Cultivated Wheat
Chen Liang, Ren Jing, Shi Haiyan, Chen Xiaodong, Zhang Miaomiao, Pan Yue, Fan Jibiao, Nevo Eviatar, Sun Dongfa, Fu Jinming, Peng Junhua
Plant Molecular Biology Reporter. 2013 31(6). p.1212
Evaluation of wheat genotypes and some soil properties under saline water irrigation
Hamam K.A., Negim O.
Annals of Agricultural Sciences. 2014 59(2). p.165
Assessing the importance of subsoil constraints to yield of wheat and its implications for yield improvement
McDonald G. K., Taylor J. D., Verbyla A., Kuchel H.
Crop and Pasture Science. 2012 63(12). p.1043
A conserved primary salt tolerance mechanism mediated by HKT transporters: a mechanism for sodium exclusion and maintenance of high K+/Na+ ratio in leaves during salinity stress
HAUSER FELIX, HORIE TOMOAKI
Plant, Cell & Environment. 2010 33(4). p.552
Plant Genomics and Climate Change (2016)
Bayer Philipp Emanuel
Use of wild relatives to improve salt tolerance in wheat
Colmer Timothy D., Flowers Timothy J., Munns Rana
Journal of Experimental Botany. 2006 57(5). p.1059
Plant-Environment Interactions, Third Edition (2006)
Chinnusamy Vishwanathan, Sairam R, Tyagi Aruna
Physiological Responses of Halophyte Suaeda salsa to Water Table and Salt Stresses in Coastal Wetland of Yellow River Delta
Guan Bo, Yu Junbao, Wang Xuehong, Fu Yuqin, Kan Xingyan, Lin Qianxin, Han Guangxuan, Lu Zhaohua
CLEAN – Soil, Air, Water. 2011 39(12). p.1029
Durum wheat salt tolerance in relation to physiological, yield and quality characters
Borrelli G., Ficco D., Giuzio L., Pompa M., Cattivelli L., Flagella Z.
Cereal Research Communications. 2011 39(4). p.525
Identification of barley landrace genotypes with contrasting salinity tolerance at vegetative growth stage
Chikha Mariem Ben, Hessini Kamel, Ourteni Rim Nefissi, Ghorbel Abdelwahed, Zoghlami Nejia
Plant Biotechnology. 2016 33(4). p.287
Phenotypic responses of the wild wheat relative Aegilops geniculata Roth and wheat (Triticum durum Desf.) to experimentally imposed salt stress
Mguis Khaled, Ben Brahim Nadia, Albouchi Ali, Yakkoubi-Tej Mbarka, Mahjoub Asma, Ouerghi Zeineb
Genetic Resources and Crop Evolution. 2008 55(5). p.665
Cell‐specific localization of Na+ in roots of durum wheat and possible control points for salt exclusion
LÄUCHLI ANDRÉ, JAMES RICHARD A., HUANG CHENG X., McCULLY MARGARET, MUNNS RANA
Plant, Cell & Environment. 2008 31(11). p.1565
Comparison of Salinity Tolerance in Geographically Diverse Collections of Thellungiella Accessions
Gandour Mhemmed, Gharred Jihed, Taamalli Wael, Abdelly Chedly
Russian Journal of Ecology. 2019 50(3). p.249
Physiological and biochemical responses of two faba bean (Vicia faba L.) varieties grown in vitro to salt stress
Desouky Abeer F., Ahmed Ahmed H. Hanafy, Reda Abdel salam A., Stȕtzel Hartmut, Hanafy Moemen S.
Journal of Crop Science and Biotechnology. 2023 26(2). p.151
Sustainable Agriculture Reviews (2015)
Jan Muhammad, Anwar-ul-Haq Muhammad, Akhtar Javaid, Waraich Ejaz Ahmad
Antioxidant Vitamins and Free Radical Status in Nigerian Pre-Eclamptic Women
Uboh F.E., Ebong P.E., Oton E., Itam I.H., Barnaby N.
Research Journal of Obstetrics and Gynecology. 2008 1(1). p.30
A comparison of hydroponic and soil-based screening methods to identify salt tolerance in the field in barley
Tavakkoli Ehsan, Fatehi Foad, Rengasamy Pichu, McDonald Glenn K.
Journal of Experimental Botany. 2012 63(10). p.3853
Stress Responses in Plants (2015)
Ivanov Anatoly A.
Physiological traits and cereal germplasm for sustainable agricultural systems
Richards R. A., Watt M., Rebetzke G. J.
Euphytica. 2007 154(3). p.409
Salinity is a prevailing factor for amelioration of wheat blast by biocontrol agents
Cabot Catalina, Bosch Rafael, Martos Soledad, Poschenrieder Charlotte, Perelló Analia
Biological Control. 2018 125 p.81
Principal component analysis-assisted screening and selection of salt-tolerant tomato genotypes
Sivakumar J., Sridhar Reddy M., Sergeant K., Hausman J. F., ShaValli Khan P. S., Osman Basha P.
Plant Physiology Reports. 2023 28(2). p.272
Emerging Technologies and Management of Crop Stress Tolerance (2014)
Rashid Bushra, Husnain Tayyab, Riazuddin Sheikh
Genetic behaviour of physiological traits conferring cytosolic K+/ Na+ homeostasis in wheat
Cuin T. A., Zhou M., Parsons D., Shabala S.
Plant Biology. 2012 14(3). p.438
Genetic Engineering (2006)
Chinnusamy Viswanathan, Zhu Jianhua, Zhu Jian-Kang
Selection of callus cultures of sugarcane (Saccharum sp.) tolerant to NaCl and their response to salt stress
Gandonou Christophe B., Errabii Tomader, Abrini Jamal, Idaomar Mohamed, Senhaji Nadia Skali
Plant Cell, Tissue and Organ Culture. 2006 87(1). p.9
Physiological and molecular analyses of seedlings of two Tunisian durum wheat (Triticum turgidum L. subsp. Durum [Desf.]) varieties showing contrasting tolerance to salt stress
Brini Faïçal, Amara Imen, Feki Kaouther, Hanin Moez, Khoudi Habib, Masmoudi Khaled
Acta Physiologiae Plantarum. 2009 31(1). p.145
Comparative Water Relations of Two Contrasting Date Palm Genotypes under Salinity
Al Kharusi Latifa, Sunkar Ramanjulu, Al-Yahyai Rashid, Yaish Mahmoud W.
International Journal of Agronomy. 2019 2019 p.1
Crop breeding for salt tolerance in the era of molecular markers and marker‐assisted selection
Ashraf Muhammad, Foolad Majid R., Tuberosa R.
Plant Breeding. 2013 132(1). p.10
Physiological changes, phenolic content and antioxidant activity of Salvia officinalis L. grown under saline conditions
Taârit Mouna Ben, Msaada Kamel, Hosni Karim, Marzouk Brahim
Journal of the Science of Food and Agriculture. 2012 92(8). p.1614
Plant Nutrition (2001)
Munns R.
A Sodium Transporter (HKT7) Is a Candidate forNax1, a Gene for Salt Tolerance in Durum Wheat
Huang Shaobai, Spielmeyer Wolfgang, Lagudah Evans S., James Richard A., Platten J. Damien, Dennis Elizabeth S., Munns Rana
Plant Physiology. 2006 142(4). p.1718
A paradigm shift towards low-nitrifying production systems: the role of biological nitrification inhibition (BNI)
Subbarao G. V., Sahrawat K. L., Nakahara K., Rao I. M., Ishitani M., Hash C. T., Kishii M., Bonnett D. G., Berry W. L., Lata J. C.
Annals of Botany. 2013 112(2). p.297
Improvement and Re-Evolution of Tetraploid Wheat for Global Environmental Challenge and Diversity Consumption Demand
Yang Fan, Zhang Jingjuan, Liu Qier, Liu Hang, Zhou Yonghong, Yang Wuyun, Ma Wujun
International Journal of Molecular Sciences. 2022 23(4). p.2206
Comparing genotypic variation in faba bean (Vicia faba L.) in response to salinity in hydroponic and field experiments
Tavakkoli Ehsan, Paull Jeffrey, Rengasamy Pichu, McDonald Glenn K.
Field Crops Research. 2012 127 p.99
Plant Abiotic Stress (2013)
Tilbrook Joanne, Roy Stuart
Evaluation of salt-tolerant genotypes of durum wheat derived from in vitro and field experiments
Houshmand Saadollah, Arzani Ahmad, Maibody Seyed Ali Mohamad, Feizi Mohammad
Field Crops Research. 2005 91(2-3). p.345
Control of Sodium Transport in Durum Wheat  
Davenport Romola, James Richard A., Zakrisson-Plogander Anna, Tester Mark, Munns Rana
Plant Physiology. 2005 137(3). p.807
Mapping of Tolerant Salinity QTLs in the Progeny of Gaspard and Kharchia Cultivars in Bread Wheat
Abedi Jamileh, Baghi Zadeh Amin, Mohammadinejad Ghasem
Journal of Crop Breeding. 2018 10(28). p.125
The landscape of molecular mechanisms for salt tolerance in wheat
Wang Meng, Xia Guangmin
The Crop Journal. 2018 6(1). p.42
Advances in Molecular Breeding Toward Drought and Salt Tolerant Crops (2007)
Munns Rana, Richards R.A.
Ionic and osmotic relations in quinoa (Chenopodium quinoa Willd.) plants grown at various salinity levels
Hariadi Y., Marandon K., Tian Y., Jacobsen S.-E., Shabala S.
Journal of Experimental Botany. 2011 62(1). p.185
(2012)
Subbarao G.V., Sahrawat K.L., Nakahara K., Ishikawa T., Kishii M., Rao I.M., Hash C.T., George T.S., Srinivasa Rao P., Nardi P., Bonnett D., Berry W., Suenaga K., Lata J.C.
Selection for Osmoregulation Gene to Improve Grain Yield of Wheat Genotypes under Osmotic Stresses
. Alireza Eivazi, . Farshid Talat, . Ali Saeed, . Hosien Ranji
Pakistan Journal of Biological Sciences. 2007 10(20). p.3703
Salt stress or salt shock: which genes are we studying?
Shavrukov Yuri
Journal of Experimental Botany. 2013 64(1). p.119
Yield and agronomic traits of Khorasan wheat (Triticum turanicum Jakubz.)
Grausgruber Heinrich, Oberforster Michael, Ghambashidze Giorgi, Ruckenbauer Peter
Field Crops Research. 2005 91(2-3). p.319
TdCBL6, a calcineurin B-like gene from wild emmer wheat (Triticum dicoccoides), is involved in response to salt and low-K+ stresses
Chen Liang, Ren Jing, Shi Haiyan, Zhang Yongkuan, You Yu, Fan Jibiao, Chen Ke, Liu Shuqian, Nevo Eviatar, Fu Jinming, Peng Junhua
Molecular Breeding. 2015 35(1).
Phenomics in Crop Plants: Trends, Options and Limitations (2015)
Rajendran Karthika, Patil Somanagouda, Kumar Shiv
Control of salt transport from roots to shoots of wheat in saline soil
Husain Shazia, von Caemmerer Susanne, Munns Rana
Functional Plant Biology. 2004 31(11). p.1115

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