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Genetic introgression from Glycine tomentella to soybean to increase seed yield
A. Akpertey
, R. J. Singh
,
B. W. Diers
, G. L. Graef
, M. A.R. Mian
, J. G. Shannon
, A. M. Scaboo
,
M. E. Hudson
, C. S. Thurber
, P. J. Brown
, R. L. Nelson
Crop Sciences
National Center for Supercomputing Applications (NCSA)
Bioengineering
Carl R. Woese Institute for Genomic Biology
Research output
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peer-review
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Keyphrases
Seed Yield
100%
Genetic Introgression
100%
Glycine Tomentella
100%
Tomentella
100%
Introgression
75%
Recurrent Parent
75%
High Yielding
50%
Backcross
50%
Maturity Group
50%
Experimental Lines
50%
Amphidiploid
50%
Australia
25%
United States
25%
Colchicine
25%
F1 Hybrids
25%
Yield Data
25%
Lodging
25%
Soybean Cultivars
25%
Agronomic Traits
25%
Yield Testing
25%
Flowering Time
25%
Parental Lines
25%
Agronomic Performance
25%
Yield Line
25%
Immature Seeds
25%
Hayata
25%
Self-fertile
25%
Soybean [Glycine Max (L.) Merr.]
25%
Narrow Genetic Base
25%
Tertiary Gene Pool
25%
Agricultural and Biological Sciences
Seeds
100%
Introgression
100%
Glycine Tomentella
100%
Tomentella
100%
Genetics
100%
Maturity Groups
50%
Perennials
25%
Cultivar
25%
Anthesis
25%
Agronomic Trait
25%
Immatures
25%
Gene Pool
25%
Inbreeding
25%
Colchicine
25%
Chromosome
25%