Dynamic product-precursor relationships underlie cuticular lipid accumulation on maize silks
Chen, K.; Alexander, L. E.; Mahgoub, U.; Okazaki, Y.; Higashi, Y.; Takano, K.; Loneman, D.; Dennison, T. S.; Lopez, M.; Claussen, R.; Peddicord, L.; Saito, K.; Lauter, N.; Dorman, K. S.; Nikolau, B. J.; Yandeau-Nelson, M. D.
Show abstract
The hydrophobic cuticle is the first line of defense between aerial portions of a plant and the external environment. On maize silks, the cuticular cutin matrix is infused with cuticular lipids, consisting of a homologous series of very-long-chain fatty acids (VLCFAs), aldehydes, and hydrocarbons that serve as precursors, intermediates, and end-products of the elongation, reduction, and decarbonylation reactions of the hydrocarbon-producing pathway. To deconvolute the potentially confounding impacts of the silk microenvironment and silk development on the hydrocarbon-producing pathway, spatio-temporal cuticular lipid profiling was conducted on the agronomically important inbreds B73 and Mo17, and their reciprocal hybrids. Statistical interrogation via multivariate analyses of the metabolite abundances of the hydrocarbon-producing pathway demonstrate that the cellular VLCFA pool is positively correlated with the cuticular lipid metabolome, and this metabolome is primarily affected by the silk microenvironment and the plant genotype. Moreover, genotype has a major effect on the pathway, with increased cuticular hydrocarbon and concomitant reduction of cuticular VLCFA accumulation on B73 silks, suggesting that conversion of VLCFAs to hydrocarbons is more effective in B73 than Mo17. Statistical modeling of the ratios between cuticular hydrocarbons and cuticular VLCFAs reveals the complexity of the product-precursor ratio relationship, demonstrating a significant role of precursor chain length. Longer-chain VLCFAs are preferentially utilized as precursors for hydrocarbon biosynthesis. Collectively, these findings demonstrate maize silks as an effective and novel system for dissection of the complex dynamics of cuticular lipid accumulation in plants. One-sentence SummaryThe product-precursor ratios in the cuticular hydrocarbon-producing pathway are impacted by fatty acid precursor chain length, plant genotype and the spatio-temporal dynamic gradients of maize silks.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Evaluation of the functional role of the maize Glossy2 and Glossy2-like genes in cuticular lipid deposition 95%
- Compensatory guaiacyl lignin biosynthesis at the expense of syringyl lignin in 4CL1-knockout poplar 94%
- The Arabidopsis thaliana carboxylesterase AtCXE12 converts volatile (Z)-3-hexenyl acetate to (Z)-3-hexenol 93%
Similar papers in this journal
- Multi-omics analysis of xylem sap uncovers dynamic modulation of poplar defenses by ammonium and nitrate 93%
- Untargeted metabolomic analyses reveal the diversity and plasticity of the specialized metabolome in seeds of different Camelina sativa genotypes 93%
- Kinetic improvement of an algal diacylglycerol acyltransferase 1 via fusion with an acyl-CoA binding protein 92%
Similar papers in this journal
- High Spatial-Resolution Imaging Of The Dynamics Of Cuticular Lipid Deposition During Arabidopsis Flower Development 95%
- Age-dependent increase in α-tocopherol and phytosterols in maize leaves exposed to elevated ozone pollution 93%
- Transcriptomics of developing wild sunflower seeds from the extreme ends of a latitudinal gradient differing in seed oil composition 93%
Similar papers in this journal
- Unveiling unique metabolomic and transcriptomic profiles in three Brassicaceae crops 94%
- Transcriptomic analysis of seed development in Paysonia auriculata (Brassicaceae) identifies genes involved in hydroxy fatty acid biosynthesis and seed maturation 93%
- Genetic Analysis of Methyl Anthranilate, Mesifurane, Linalool and Other Flavor Compounds in Cultivated Strawberry (Fragaria xananassa) 92%
Similar papers in this journal
- Variation in morpho-physiological and metabolic responses to low nitrogen stress across the sorghum association panel 93%
- Decoupling of plastid and endomembrane homeoviscous response to low temperature and darkness in Phaeodactylum tricornutum 91%
- Induction by caterpillars of stored and emitted volatiles in terpene chemotypes from populations of wild cotton (Gossypium hirsutum) 91%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.