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Articles citing this paper

Possible role for wild genotypes of Pisum spp. to enhance ascochyta blight resistance in pea

J. M. Wroth
38(5) pp.469 - 479


62 articles found in Crossref database.

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Parihar A. K., Dixit G. P., Bohra A., Sen Gupta D., Singh Anil K., Kumar Nitin, Singh D., Singh N. P.
Expression of defence‐related genes in stems and leaves of resistant and susceptible field pea (Pisum sativum) during infection by Phoma koolunga
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A Quantitative Analysis of Resistance to Mycosphaerella Blight in Field Pea
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Czech Journal of Genetics and Plant Breeding. 2005 41(2). p.51
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Tivoli Bernard, Baranger Alain, Avila Carmen M., Banniza Sabine, Barbetti Martin, Chen Weidong, Davidson Jenny, Lindeck Kurt, Kharrat Mohammed, Rubiales Diego, Sadiki Mohamed, Sillero Josefina C., Sweetingham Mark, Muehlbauer Fred J.
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