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Infestation by Myzus persicae increases susceptibility of Brassica napus cv. “Canard” to Rhizoctonia solani AG 2-1 (2018)
Journal Article
Drizou, F., Bruce, T. J. A., Ray, R. V., & Graham, N. S. (2018). Infestation by Myzus persicae increases susceptibility of Brassica napus cv. “Canard” to Rhizoctonia solani AG 2-1. Frontiers in Plant Science, 9, 1-14. https://doi.org/10.3389/fpls.2018.01903

Activation of plant defense pathways can be influenced by the presence of different species of attacking organisms. Understanding the complicated interactions triggering plant defense mechanisms is of great interest as it may allow the development of... Read More about Infestation by Myzus persicae increases susceptibility of Brassica napus cv. “Canard” to Rhizoctonia solani AG 2-1.

Species-wide variation in shoot nitrate concentration, and genetic loci controlling nitrate, phosphorous and potassium accumulation in Brassica napus L (2018)
Journal Article
Alcock, T. D., Havlickova, L., He, Z., Wilson, L., Bancroft, I., White, P. J., …Graham, N. S. (2018). Species-wide variation in shoot nitrate concentration, and genetic loci controlling nitrate, phosphorous and potassium accumulation in Brassica napus L. Frontiers in Plant Science, 9, Article 1487. https://doi.org/10.3389/fpls.2018.01487

A PSTOL-like gene, TaPSTOL, controls a number of agronomically important traits in wheat (2018)
Journal Article
Milner, M. J., Howells, R. M., Craze, M., Bowden, S., Graham, N., & Wallington, E. J. (2018). A PSTOL-like gene, TaPSTOL, controls a number of agronomically important traits in wheat. BMC Plant Biology, 18(1), Article 115. https://doi.org/10.1186/s12870-018-1331-4

Background Phosphorus (P) is an essential macronutrient for plant growth, and is required in large quantities by elite varieties of crops to maintain yields. Approximately 70% of global cultivated land suffers from P deficiency, and it has recentl... Read More about A PSTOL-like gene, TaPSTOL, controls a number of agronomically important traits in wheat.

Physiological profile of CAX1a TILLING mutants of Brassica rapa exposed to different calcium doses (2018)
Journal Article
Navarro-León, E., Ruiz, J. M., Graham, N., & Blasco, B. (in press). Physiological profile of CAX1a TILLING mutants of Brassica rapa exposed to different calcium doses. Plant Science, https://doi.org/10.1016/j.plantsci.2018.04.019

Calcium (Ca) is an essential macronutrient for plants and its homeostasis is basic for many processes in plants. Therefore, both Ca deficiency and toxicity constitute potential issues for crops. CAX1 transporter is a potential target to obtain plants... Read More about Physiological profile of CAX1a TILLING mutants of Brassica rapa exposed to different calcium doses.