Genotype by environment interactions and combining ability for strawberry families grown in diverse environments

Author:

Mathey Megan M.,Mookerjee Sonali,Mahoney Lise L.,Gündüz Kazim,Rosyara Umesh,Hancock James F.,Stewart Philip J.,Whitaker Vance M.,Bassil Nahla V.,Davis Thomas M.,Finn Chad E.

Funder

National Institute of Food and Agriculture

Agricultural Research Service

Publisher

Springer Science and Business Media LLC

Subject

Horticulture,Plant Science,Genetics,Agronomy and Crop Science

Reference21 articles.

1. Bentvelsen G, Bouw B (2006) Breeding ornamental strawberries. Acta Hort 708:455–458

2. Bernardo R (2010) Estimating genetic variances. In: Bernardo J (ed) Breeding for quantitative traits in plants. Stemma Press, Woodbury, pp 148–175

3. Bestfleisch M, Höfer M, Richter K, Hanke MV, Schulte E, Peil A, Flachowsky H (2012) Breeding of resistant strawberry cultivars for organic fruit production-diallel crossing strategies and resistance tests for Botrytis cinerea and Xanthomonas fragariae. In: Proceeding of the 15th International Conference on Organic Fruit Production, pp 221–227

4. Hancock JF, Callow PW, Mathey MM, Mackey T, Gündüz K, Mookerjee S, Cai L, Salinas N, Bassil NV, Hummer KE, Finn CE (2015) Phenotypic variability in a panel of strawberry cultivars from North America and the European Union. J Am Pomol Soc 69:85–101

5. Hancock JF, Sooriyapathirana SS, Bassil NV, Stegmeir T, Cai L, Finn CE, Van de Weg E, Weebadde CK (2016) Public availability of a genotyped, segregating population may foster marker assisted breeding (MAB) and quantitative trait loci (QTL) discovery: an example using strawberry. Front Plant Sci 7:619. doi:10.3389/fpls.2016.00619

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