Study of Lignification by Noninvasive Techniques in Growing Maize Internodes (An Investigation by Fourier Transform Infrared Cross-Polarization-Magic Angle Spinning 13C-Nuclear Magnetic Resonance Spectroscopy and Immunocytochemical Transmission Electron Microscopy)

Author:

Joseleau J. P.1,Ruel K.1

Affiliation:

1. Centre de Recherches sur les Macromolecules Vegetales, Centre National de la Recherche Scientifique, Associe a I'Universite Joseph Fourier, BP 53, 38041 Grenoble cedex 9, France

Abstract

Abstract Noninvasive techniques were used for the study in situ of lignification in the maturing cell walls of the maize (Zea mays L.) stem. Within the longitudinal axis of a developing internode all of the stages of lignification can be found. The synthesis of the three types of lignins, p-hydroxyphenylpropane (H), guaiacyl (G), and syringyl (S), was investigated in situ by cross-polarization-magic angle spinning 13C-solid-state nuclear magnetic resonance, Fourier transform infrared spectroscopy, and immunocytochemical electron microscopy. The first lignin appearing in the parenchyma is of the G-type, preceeding the incorporation of S nuclei in the later stages. However, in vascular bundles, typical absorption bands of S nuclei are visible in the Fourier transform infrared spectra at the earliest stage of lignification. Immunocytochemical determination of the three types of lignin in transmission electron microscopy was possible thanks to the use of antisera prepared against synthetic H, G, and the mixed GS dehydrogenative polymers (K. Ruel, O. Faix, J.P. Joseleau [1994] J Trace Microprobe Tech 12: 247–265). The specificity of the immunological probes demonstrated that there are differences in the relative temporal synthesis of the H, G, and GS lignins in the different tissues undergoing lignification. Considering the intermonomeric linkages predominating in the antigens used for the preparation of the immunological probes, the relative intensities of the labeling obtained provided, for the first time to our knowledge, information about the macromolecular nature of lignins (condensed versus noncondensed) in relation to their ultrastructural localization and developmental stage.

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Genetics,Physiology

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