Orr, N.L. Paiva, Molecular biology of stress-induced phenylpropanoid and isoflavonoid biosynthesis in alfalfa, in: H.A. Stafford, R.K. Ibrahim (Eds.), Phenolic Metabolism in Plants, Plenum press, New York, 1992, pp. 91-138.Dixon RA, Choudhary AD, Dalkin K, Edwards R, Fahrendorf T...
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Cold stress, another major abiotic factor, significantly impacts crop yield and quality [30]. Low temperatures disrupt photosynthesis, membrane integrity, and respiratory metabolism in plants [31,32]. In general, increased production of reactive oxygen species (ROS) under abiotic stresses can lead to...
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maslennikova d, ivanov s, petrova s, burkhanova g, maksimov i, lastochkina o. components of the phenylpropanoid pathway in the implementation of the protective effect of sodium nitroprusside on wheat under salt stress. plants. 2023;12(11):2123. https://doi.org/10.3390/plants12112123 . ...
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hormones activated specific signaling pathways that promoted phenylpropanoid biosynthesis and augmented biphenyl phytoalexin production. Moreover, reactive oxygen species (ROS) generated during this process also acted as signaling molecules, amplifying the phenylpropanoid biosynthesis cascade...
In addition, although a previous study has shown that the natural variation of ZmCS3 (GRMZM2G063909) is associated with the abundance of various phenylpropanoid hydroxycitric acid ester isomers, the chemical identities of METO28 and METO9 remain to be investigated. Fig. 4 Open in figure viewer...
amino sugar and nucleotide sugar metabolism; ko00531, glycosaminoglycan degradation; ko00906, carotenoid biosynthesis; ko00940, phenylpropanoid biosynthesis; ko01100, metabolic pathways; ko01110, biosynthesis of secondary metabolites; ko01212, fatty acid metabolism; ko03008, ribosome biogenesis in eukaryotes...