Phenolic and Short-Chained Aliphatic Organic Acid Constituents of Wild Oat (Avena fatua L.) Seeds

RS Gallagher, R Ananth, K Granger… - Journal of agricultural …, 2010 - ACS Publications
RS Gallagher, R Ananth, K Granger, B Bradley, JV Anderson, EP Fuerst
Journal of agricultural and food chemistry, 2010ACS Publications
The objective of this research was to identify and quantify the phenolic and short-chained
aliphatic organic acids present in the seeds of three wild-type populations of wild oat and
compare these results to the chemical composition of seeds from two commonly utilized wild
oat isolines (M73 and SH430). Phenolic acids have been shown to serve as germination
inhibitors, as well as protection for seeds from biotic and abiotic stress factors in other
species, whereas aliphatic organic acids have been linked to germination traits and …
The objective of this research was to identify and quantify the phenolic and short-chained aliphatic organic acids present in the seeds of three wild-type populations of wild oat and compare these results to the chemical composition of seeds from two commonly utilized wild oat isolines (M73 and SH430). Phenolic acids have been shown to serve as germination inhibitors, as well as protection for seeds from biotic and abiotic stress factors in other species, whereas aliphatic organic acids have been linked to germination traits and protection against pathogens. Wild oat populations were grown under a “common garden” environment to remove maternal variation, and the resulting seeds were extracted to remove the readily soluble and chemically bound phenolic and aliphatic organic acid components. Compounds were identified and quantified using gas chromatography−mass spectrometry. Ferulic and p-coumaric acid comprised 99% of the total phenolic acids present in the seeds, of which 91% were contained in the hulls and 98% were in the chemically bound forms. Smaller quantities of OH benzoic and vanillic acid were also detected. Soluble organic acids concentrations were higher in the M73 isoline compared to SH430, suggesting that these chemical constituents could be related to seed dormancy. Malic, succinic, fumaric and azelaic acid were the dominant aliphatic organic acids detected in all seed and chemical fractions.
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