A phosphatidic acid-binding protein of the chloroplast inner envelope membrane involved in lipid trafficking. Banfield, M. The structure of antirrhinum centroradialis protein CEN suggests a role as a kinase regulator. Barnes, A. Determining protein identity from sieve element sap in Ricinus communis L. Behmer, S. Plant sterols and host plant suitability for a phloem feeding insect.
CrossRef Full Text. Behnke, H. Distribution and evolution of forms and types of sieve-element plastids in the dicotyledons. Aliso 3, — The development of specific sieve-element plastids in would phloem of Coleus blumei S-type and Pisum sativum P-type , regenerated from amyloplast-containing parenchyma cells. Protoplasma , — Beisson, F.
Arabidopsis genes involved in acyl lipid metabolism. A census of the candidates, a study of the distribution of expressed sequence tags in organs, and a web-based database. Plant Physiol. Blaner, W. Retinol-binding protein: the serum transport protein for vitamin A. Burton, R. Virus-induced silencing of a plant cellulose synthase. Plant Cell 12, — Charbonneau, D.
Structural analysis of human serum albumin complexes with cationic lipids. B , — Chen, S. Long-distance phloem transport of glucosinolates in Arabidopsis. Citovsky, V. Systemic transport of RNA in plants. Corbesier, L. FT protein movement contributes to long-distance signaling in floral induction of Arabidopsis. Science , — Cytokinin levels in leaves, leaf exudate and shoot apical meristem of Arabidopsis thaliana during floral transition. Cronshaw, J. Phloem structure and function. Danilevskaya, O. Beyond flowering time: pleiotropic function of the maize flowering hormone florigen.
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Ding, B. Symplasmic protein and RNA traffic: regulatory points and regulatory factors. Plant Biol. Ding, Y. Ellinger, D. Involvement of DAD1-like lipases in response to salt and osmotic stress in Arabidopsis thaliana. Dongle and defective in anther dehiscence1 lipases are not essential for wound- and pathogen-induced jasmonate biosynthesis: redundant lipases contribute to jasmonate formation. Emi, T. Ferl, R. Plant Mol. Ferrando-Miguel, R.
Protein levels of genes encoded on chromosome 21 in fetal down syndrome brain part V : overexpression of phosphatidyl-inositol-glycan class P protein DSCR5. Amino Acids 26, — Feys, B. Embo J. Fisher, D. Turnover of soluble-proteins in the wheat sieve tube. Fu, H.
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- Frontiers | New Aspects of Phloem-Mediated Long-Distance Lipid Signaling in Plants | Plant Science?
- Plant lipid signaling protocols?
- Plant Lipid Signaling Protocols?
Giavalisco, P. Towards the proteome of Brassica napus phloem sap. Proteomics 6, — Glatz, J. Fatty acids in cell signaling: modulation by lipid binding proteins. Prostaglandins Leukot. Fatty Acids 52, — Guan, Y. Binding of arabinogalactan proteins by yariv phenylglycoside triggers wound-like responses in Arabidopsis cell cultures.
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Guelette, B. Identification of lipids and lipid-binding proteins in phloem exudates from Arabidopsis thaliana. Benning and J. Haebel, S. Planta , — Ham, B. Polypyrimidine tract binding protein, CmRBP50, forms the basis of a pumpkin phloem ribonucleoprotein complex. Plant Cell 21, — Hamberg, M. Alpha-oxidation of fatty acids in higher plants — Identification of a pathogen-inducible oxygenase PIOX as an alpha-dioxygenase and biosynthesis of 2-hydroperoxylinolenic acid. Hause, B. Enzymes of jasmonate biosynthesis occur in tomato sieve elements.
Hayashi, H. Proteins in the sieve element-companion cell complexes: their detection, localization and possible functions. Haywood, V. Phloem long-distance trafficking of gibberellic acid-insensitive RNA regulates leaf development. Hekman, M. Reversible membrane interaction of BAD requires two C-terminal lipid binding domains in conjunction with protein binding.
Hoffmann-Benning, S. Huang, D. The relationship of drought-related gene expression in Arabidopsis thaliana to hormonal and environmental factors. Hunt, A. Dynamic lipidomics of the nucleus. Karlgren, A. Evolution of the PEBP gene family in plants: functional diversification in seed plant evolution. Katagiri, T. An important role of phosphatidic acid in ABA signaling during germination in Arabidopsis thaliana.
Kehr, J. Phloem sap proteins: their identities and potential roles in the interaction between plants and phloem-feeding insects. Long distance transport and movement of RNA through the phloem. Analysis of phloem protein patterns from different organs of Cucurbita maxima Duch. Kikuchi, R. Molecular and functional characterization of PEBP genes in barley reveal the diversification of their roles in flowering. Konopka-Postupolska, D.
The role of annexin 1 in drought stress in Arabidopsis. Koo, A. The wound hormone jasmonate. Phytochemistry 70, — Immunolocalization of a novel annexin-like protein encoded by a stress and abscisic acid responsive gene in alfalfa. Macromolecular trafficking indicated by localization and turnover of sucrose transporters in enucleate sieve elements. Lee, Y. Roles of phosphoinositides in regulation of stomatal movements. Lee, J. Plasmodesmal-associated protein kinase in tobacco and Arabidopsis recognizes a subset of non-cell-autonomous proteins. Plant Cell 17, — Lin, M.
FT protein may act as the long-distance florigenic signal in the cucurbits. Plant Cell 19, — Analysis of the pumpkin phloem proteome provides functional insights into angiosperm sieve tube function. Cell Proteomics 8, — Pubmed Abstract Pubmed Full Text. Lough, T. Integrative plant biology: role of phloem long-distance macromolecular trafficking. Lu, B. A amino acid sequence of the Arabidopsis TGD2 protein is sufficient for specific binding of phosphatidic acid. Lucas, W.
Madey, E. Isolation and characterization of lipid in phloem sap of canola.
Maeda, H. Tocopherols play a crucial role in low-temperature adaptation and phloem loading in Arabidopsis. Plant Cell 18, — Maldonado, A.
A putative lipid transfer protein involved in systemic resistance signaling in Arabidopsis. Nature , — Marentes, E. Mayfield, J. Gene families from the Arabidopsis thaliana pollen coat proteome. Rapid initiation of Arabidopsis pollination requires the oleosin-domain protein GRP Cell Biol. Mitton, F. Phloem sap of tomato plants contains a DIR1 putative ortholog.
Mogensen, J. The major birch allergen, Bet v 1, shows affinity for a broad spectrum of physiological ligands. Mortimer, J. Annexins: multifunctional components of growth and adaptation. Mustroph, A. Profiling translatomes of discrete cell populations resolves altered cellular priorities during hypoxia in Arabidopsis. Munnik, T. Lipid Res. Osmotic stress-induced phosphoinositde and inositol signaling in plants.
Plant lipid signaling protocols [electronic resource] / | University of Toronto Libraries
Plant Cell and Environ. Nagy, L. Roles for lipid activated transcription factors. Food Res. Nelson, D. Lehninger: Principles of Biochemistry , 5th Edn. New York: W. Freeman and Company, — Neudecker, P. Allergic cross-reactivity made visible: solution structure of the major cherry allergen Pru av 1. Peles, E. Identification of a novel contactin-associated transmembrane receptor with multiple domains implicated in protein-protein interactions. EMBO J. Radauer, C. The Bet v 1 fold: an ancient, versatile scaffold for binding of large, hydrophobic ligands.
BMC Evol. Raven, J. Long-term functioning of enucleate sieve elements: possible mechanisms of damage avoidance and damage repair. Plant Cell Environ. Ruiz-Medrano, R. Development , — Ryabov, E. A plant virus-encoded protein facilitates long-distance movement of heterologous viral RNA. Sakuth, T. Specific proteins in the sieve-tube exudate of Ricinus communis l seedlings — separation, characterization and in vivo labeling.
Sanz, A. PIOX, a new pathogen-induced oxygenase with homology to animal cyclooxygenase. Plant Cell 10, — Schilmiller, A. Systemic signaling in the wound response. Schobert, C. Sieve-tube exudate from Ricinus communis l seedlings contains ubiquitin and chaperones. Schultz, C. GPI-anchors on arabinogalactan-proteins: implication for signalling in plants. Seo, H. Jasmonic acid carboxyl methyltransferase: a key enzyme for jasmonate-regulated plant responses.
Shah, J. Development and structure of phloem in the petiole of Langenaria siceraria Mol. Shevchenko, A. Mass spectrometric sequencing of proteins from silver-stained polyacrylamide gels. Long-range signalling in plant reproductive development. Suzui, N. A putative acyl-CoA-binding protein is a major phloem sap protein in rice Oryza sativa L.
Tamaki, S. Hd3a protein is a mobile flowering signal in rice. Taoka, K.
Testerink, C. Phosphatidic acid: a multifunctional stress signaling lipid in plants. Thorpe, M. Tontonoz, P. Stimulation of adipogenesis in fibroblasts by PPARg2, a lipid-activated transcription factor. Cell 79, — There are currently very few books on the market addressing this important area of biochemistry and this volume would be a valuable addition to the collection of any laboratory studying lipid signalling molecules.
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