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Revealing the structural and functional diversity of plant cell walls
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Carbohydrate-binding modules: Fine-tuning polysaccharide recognition
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Boraston, A. B., Bolam, D. N., Gilbert, H. J., and Davies, G. J. (2004) Carbohydrate-binding modules: fine-tuning polysaccharide recognition. Biochem J 382, 769–781.
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0842346119
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Glycoside hydrolase carbohydrate-binding modules as molecular probes for the analysis of plant cell wall polymers
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McCartney, L., Gilbert, H. J., Bolam, D. N., Boraston, A. B., and Knox, J. P. (2004) Glycoside hydrolase carbohydrate-binding modules as molecular probes for the analysis of plant cell wall polymers. Anal Biochem 326, 49–54.
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Anal Biochem
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McCartney, L.1
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4
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Pectic homogalacturonan masks abundant sets of xyloglucan epitopes in plant cell walls
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Marcus, S. E., Verhertbruggen, Y., Hervé, C., Ordaz-Ortiz, J. J., Farkas, V., Pedersen, H. L., Willats, W. G. T., and Knox, J. P. (2008) Pectic homogalacturonan masks abundant sets of xyloglucan epitopes in plant cell walls. BMC Plant Biol 8, 60.
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BMC Plant Biol
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Farkas, V.5
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Willats, W.G.T.7
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5
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Enzymatic treatments reveal differential capacities for xylan recognition and degradation in primary and secondary plant cell walls
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Hervé, C., Rogowski, A., Gilbert, H. J., and Knox, J. P. (2009) Enzymatic treatments reveal differential capacities for xylan recognition and degradation in primary and secondary plant cell walls. Plant J 58, 413–422.
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Plant J
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Hervé, C.1
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Antibody techniques
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Oxford University Press, Oxford, UK
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Willats, W. G. T., Steele-King, C. G., Marcus, S. E., and Knox, J. P. (2002) Antibody techniques. In: Molecular Plant Biology – Volume Two: A Practical Approach (Gilmartin P. M., Bowler C. (eds)), pp 199–219, Oxford University Press, Oxford, UK.
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High-throughput mapping of cell wall polymers within and between plants using novel microarrays
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Moller, I., Sørensen, I., Bernal, A. J., Blaukopf, C., Lee, K., Øbro, J., Pettolino, F., Roberts, A., Mikkelsen, J. D., Knox, J. P., Bacic, A., and Willats, W. G. T. (2007) High-throughput mapping of cell wall polymers within and between plants using novel microarrays. Plant J 50, 1118–1128.
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Plant J
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Moller, I.1
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Blaukopf, C.4
Lee, K.5
Øbro, J.6
Pettolino, F.7
Roberts, A.8
Mikkelsen, J.D.9
Knox, J.P.10
Bacic, A.11
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8
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A new ribboning embedding medium for histology
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A cortical band of gelatinous fibers causes the coiling of redvine tendrils: A model based upon cytochemical and immunocy-tochemical studies
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Meloche, C. G., Knox, J. P., and Vaughn, K. C. (2007) A cortical band of gelatinous fibers causes the coiling of redvine tendrils: a model based upon cytochemical and immunocy-tochemical studies. Planta 225, 485–498.
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Planta
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Meloche, C.G.1
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