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Biochemical response of soybean roots to Fusarium solani f. sp. glycines infection
V. V. Lozovaya
, A. V. Lygin
, S. Li
,
G. L. Hartman
, J. M. Widholm
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›
peer-review
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Keyphrases
Glycine
100%
Biochemical Response
100%
Fusarium Solani
100%
Soybean Root
100%
Glyceollins
100%
Isoflavones
60%
Genotype
40%
Phytoalexin
40%
Phenylpropanoid Pathway
40%
Lignin
20%
Inoculum
20%
Inoculation
20%
Resistant Cultivars
20%
Glycine Max (L.) Merrill
20%
Three-line
20%
Resistant Lines
20%
Partial Resistance
20%
Daidzein
20%
Resistance Response
20%
Resistant Genotypes
20%
Soil Fungi
20%
Sudden Death Syndrome
20%
Agar Media
20%
Potato Dextrose Agar
20%
Phenylalanine Ammonia-lyase
20%
Root Tissue
20%
Lignification
20%
Lignin Synthesis
20%
Phenolic Metabolism
20%
Roots in Soil
20%
Agricultural and Biological Sciences
Isoflavone
100%
Fusarium solani
100%
Phytoalexin
100%
Agar
50%
Cultivar
50%
Daidzein
50%
Phenylalanine Ammonia-Lyase
50%
Lignification
50%
Inoculum
50%