Durum wheat with the introgressed TaMATE1B gene shows resistance to terminal drought by ensuring deep root growth in acidic and Al3+-toxic subsoils
Author:
Publisher
Springer Science and Business Media LLC
Subject
Plant Science,Soil Science
Link
https://link.springer.com/content/pdf/10.1007/s11104-021-04961-6.pdf
Reference53 articles.
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3. Aziz MM, Palta JA, Siddique KHM, Sadras VO (2016) Five decades of selection for yield reduced root length density and increased nitrogen uptake per unit root length in Australian wheat varieties. Plant Soil 413:181–192
4. Benlloch-Gonzalez M, Berger J, Bramley H, Rebetzke GJ, Palta JA (2014) The plasticity of the growth and proliferation of wheat root system under elevated CO2. Plant Soil 374:963–976
5. Beres BL, Rahmani E, Clarke JM, Grassini P, Pozniak CJ, Geddes CM, Porker KD, May WE, Ransom JK (2020) A systematic review of durum wheat: enhancing production systems by exploring genotype, environment, and management (G x E x M) synergies. Front Plant Sci 11:|Article 568657
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