TY - JOUR
T1 - Exploiting Phenylpropanoid Derivatives to Enhance the Nutraceutical Values of Cereals and Legumes
AU - Dwivedi, Sangam L.
AU - Upadhyaya, Hari D.
AU - Chung, Ill-Min
AU - De Vita, Pasquale
AU - Garcia-Lara, Silverio
AU - Guajardo-Flores, Daniel
AU - Gutierrez-Uribe, Janet A.
AU - Serna-Saldivar, Sergio O.
AU - Rajakumar, Govindasamy
AU - Sahrawat, Kanwar L.
AU - Kumar, Jagdish
AU - Ortiz, Rodomiro
AU - Ortiz Rios, Rodomiro Octavio
AU - et al.
PY - 2016
Y1 - 2016
N2 - Phenylpropanoids are a diverse chemical class with immense health benefits that are biosynthesized from the aromatic amino acid L-phenylalanine. This article reviews the progress for accessing variation in phenylpropanoids in germplasm collections, the genetic and molecular basis of phenylpropanoid biosynthesis, and the development of cultivars dense in seed-phenylpropanoids. Progress is also reviewed on high-throughput assays, factors that influence phenylpropanoids, the site of phenylpropanoids accumulation in seed, Genotype × Environment interactions, and on consumer attitudes for the acceptance of staple foods rich in phenylpropanoids. A paradigm shift was noted in barley, maize, rice, sorghum, soybean, and wheat, wherein cultivars rich in phenylpropanoids are grown in Europe and North and Central America. Studies have highlighted some biological constraints that need to be addressed for development of high-yielding cultivars that are rich in phenylpropanoids. Genomics-assisted breeding is expected to facilitate rapid introgression into improved genetic backgrounds by minimizing linkage drag. More research is needed to systematically characterize germplasm pools for assessing variation to support crop genetic enhancement, and assess consumer attitudes to foods rich in phenylpropanoids.
AB - Phenylpropanoids are a diverse chemical class with immense health benefits that are biosynthesized from the aromatic amino acid L-phenylalanine. This article reviews the progress for accessing variation in phenylpropanoids in germplasm collections, the genetic and molecular basis of phenylpropanoid biosynthesis, and the development of cultivars dense in seed-phenylpropanoids. Progress is also reviewed on high-throughput assays, factors that influence phenylpropanoids, the site of phenylpropanoids accumulation in seed, Genotype × Environment interactions, and on consumer attitudes for the acceptance of staple foods rich in phenylpropanoids. A paradigm shift was noted in barley, maize, rice, sorghum, soybean, and wheat, wherein cultivars rich in phenylpropanoids are grown in Europe and North and Central America. Studies have highlighted some biological constraints that need to be addressed for development of high-yielding cultivars that are rich in phenylpropanoids. Genomics-assisted breeding is expected to facilitate rapid introgression into improved genetic backgrounds by minimizing linkage drag. More research is needed to systematically characterize germplasm pools for assessing variation to support crop genetic enhancement, and assess consumer attitudes to foods rich in phenylpropanoids.
KW - anthocyanins
KW - cereals
KW - flavonoids
KW - Genotype x Environment interaction
KW - genetics and biosynthesis
KW - germplasm
KW - legumes
KW - phenolics
KW - anthocyanins
KW - cereals
KW - flavonoids
KW - Genotype x Environment interaction
KW - genetics and biosynthesis
KW - germplasm
KW - legumes
KW - phenolics
UR - https://res.slu.se/id/publ/76268
U2 - 10.3389/fpls.2016.00763
DO - 10.3389/fpls.2016.00763
M3 - Review article
C2 - 27375635
SN - 1664-462X
VL - 7
JO - Frontiers in Plant Science
JF - Frontiers in Plant Science
M1 - 763
ER -